WO2022265390A1 - Method and device for uwb communication - Google Patents
Method and device for uwb communication Download PDFInfo
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- WO2022265390A1 WO2022265390A1 PCT/KR2022/008475 KR2022008475W WO2022265390A1 WO 2022265390 A1 WO2022265390 A1 WO 2022265390A1 KR 2022008475 W KR2022008475 W KR 2022008475W WO 2022265390 A1 WO2022265390 A1 WO 2022265390A1
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- uwb
- aoa
- field
- message
- ranging
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/80—Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S1/00—Beacons or beacon systems transmitting signals having a characteristic or characteristics capable of being detected by non-directional receivers and defining directions, positions, or position lines fixed relatively to the beacon transmitters; Receivers co-operating therewith
- G01S1/02—Beacons or beacon systems transmitting signals having a characteristic or characteristics capable of being detected by non-directional receivers and defining directions, positions, or position lines fixed relatively to the beacon transmitters; Receivers co-operating therewith using radio waves
- G01S1/04—Details
- G01S1/042—Transmitters
- G01S1/0428—Signal details
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S13/00—Systems using the reflection or reradiation of radio waves, e.g. radar systems; Analogous systems using reflection or reradiation of waves whose nature or wavelength is irrelevant or unspecified
- G01S13/02—Systems using reflection of radio waves, e.g. primary radar systems; Analogous systems
- G01S13/0209—Systems with very large relative bandwidth, i.e. larger than 10 %, e.g. baseband, pulse, carrier-free, ultrawideband
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S13/00—Systems using the reflection or reradiation of radio waves, e.g. radar systems; Analogous systems using reflection or reradiation of waves whose nature or wavelength is irrelevant or unspecified
- G01S13/74—Systems using reradiation of radio waves, e.g. secondary radar systems; Analogous systems
- G01S13/76—Systems using reradiation of radio waves, e.g. secondary radar systems; Analogous systems wherein pulse-type signals are transmitted
- G01S13/765—Systems using reradiation of radio waves, e.g. secondary radar systems; Analogous systems wherein pulse-type signals are transmitted with exchange of information between interrogator and responder
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S5/00—Position-fixing by co-ordinating two or more direction or position line determinations; Position-fixing by co-ordinating two or more distance determinations
- G01S5/0009—Transmission of position information to remote stations
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/69—Spread spectrum techniques
- H04B1/7163—Spread spectrum techniques using impulse radio
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/14—Session management
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/06—Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]; Services to user groups; One-way selective calling services
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/20—Services signaling; Auxiliary data signalling, i.e. transmitting data via a non-traffic channel
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S11/00—Systems for determining distance or velocity not using reflection or reradiation
- G01S11/02—Systems for determining distance or velocity not using reflection or reradiation using radio waves
- G01S11/04—Systems for determining distance or velocity not using reflection or reradiation using radio waves using angle measurements
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S3/00—Direction-finders for determining the direction from which infrasonic, sonic, ultrasonic or electromagnetic waves, or particle emission, not having a directional significance, are being received
- G01S3/02—Direction-finders for determining the direction from which infrasonic, sonic, ultrasonic or electromagnetic waves, or particle emission, not having a directional significance, are being received using radio waves
- G01S3/14—Systems for determining direction or deviation from predetermined direction
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B2201/00—Indexing scheme relating to details of transmission systems not covered by a single group of H04B3/00 - H04B13/00
- H04B2201/69—Orthogonal indexing scheme relating to spread spectrum techniques in general
- H04B2201/7163—Orthogonal indexing scheme relating to impulse radio
- H04B2201/71634—Applied to ranging
Definitions
- the Internet is evolving from the human-centered connection network by which humans create and consume information to the Internet of Things (IoT) network by which information is communicated and processed between things or other distributed components.
- IoT Internet of Things
- IoE Internet of Everything
- sensing technology e.g., a wired/wireless communication and network infrastructure, service interface and security technologies.
- M2M machine-to-machine
- MTC machine-type communication
- a first ultra-wideband (UWB) device in a wireless communication includes a transceiver and at least one processor electrically coupled with the transceiver, wherein the at least one processor is configured to configure the first UWB device as an advertiser, and transmit a UWB message for advertisement, and wherein the UWB message is used for measuring an angle of arrival (AoA).
- UWB ultra-wideband
- a second ultra-wideband (UWB) device in a wireless communication includes a transceiver and at least one processor electrically coupled with the transceiver, wherein the at least one processor is configured to configure the second UWB device as an observer, and receive, from a first UWB device, a UWB message for advertisement, and wherein the UWB message is used for measuring an angle of arrival (AoA).
- AoA angle of arrival
- FIG. 4 is a flowchart illustrating an operation for providing an advertisement by a UWB device according to an embodiment of the disclosure.
- each flowchart and combinations of the flowcharts may be performed by computer program instructions. Since the computer program instructions may be equipped in a processor of a general-use computer, a special-use computer or other programmable data processing devices, the instructions executed through a processor of a computer or other programmable data processing devices generate means for performing the functions described in connection with a block(s) of each flowchart.
- the term 'terminal' or 'device' may also be referred to as a mobile station (MS), user equipment (UE), user terminal (UT), terminal, wireless terminal, access terminal (AT), subscriber unit, subscriber station (SS), wireless device, wireless communication device, wireless transmit/receive unit (WTRU), mobile node, or mobile or may be referred to in other terms.
- MS mobile station
- UE user equipment
- UT user terminal
- AT access terminal
- subscriber unit subscriber station
- WTRU wireless transmit/receive unit
- mobile node or mobile or may be referred to in other terms.
- UWB may refer to a wireless communication technology that uses a bandwidth of 500 MHz or more or a bandwidth corresponding to a center frequency of 20% or more.
- UWB may mean a band itself to which UWB communication is applied.
- UWB may enable secure and accurate ranging between devices.
- UWB enables relative position estimation based on the distance between two devices or accurate position estimation of a device based on the distance from fixed devices (whose positions are known).
- Application protocol data unit may be a command and a response used when communicating with the application data structure in the UWB device.
- Application specific data may be, e.g., a file structure having a root level and an application level including UWB controllee information and UWB session data required for a UWB session.
- Controller may be a ranging device that defines and controls ranging control messages (RCM) (or control messages).
- RCM ranging control messages
- Controllee may be a ranging device using a ranging parameter in the RCM (or control message) received from the controller.
- Applet may be, e.g., an applet executed on the secure component including UWB parameters and service data.
- Applet may be a FiRa Applet.
- Ranging Device may be a device capable of performing UWB ranging.
- the Ranging Device may be an Enhanced Ranging Device (ERDEV) defined in IEEE 802.15.4z.
- the Ranging Device may be referred to as a UWB device.
- OOB Connector may be a software component for establishing an out-of-band (OOB) connection (e.g., BLE connection) between Ranging Devices.
- OOB out-of-band
- the OOB Connector may be a FiRa OOB Connector.
- Profile may be a previously defined set of UWB and OOB configuration parameters.
- Profile may be a FiRa Profile.
- Framework API may be an API used by a UWB-enabled Application to communicate with the Framework.
- Out-Of-Band may be data communication that does not use UWB as an underlying wireless technology.
- “Secure Service” may be a software component for interfacing with a Secure Component, such as a Secure Element or Trusted Execution Environment (TEE).
- a Secure Component such as a Secure Element or Trusted Execution Environment (TEE).
- TEE Trusted Execution Environment
- Service Applet may be an applet on a Secure Component that handles service specific transactions.
- Service Data may be data defined by a service provider that needs to be transferred between two ranging devices to implement a service.
- Service Provider may be an entity that defines and provides hardware and software required to provide a specific service to an end-user.
- Static STS mode is an operation mode in which STS is repeated during a session, and does not need to be managed by the Secure Component.
- UWB Session Key may be a key used to protect the UWB Session.
- the UWB Session Key may be used to generate the STS.
- the UWB Session Key may be a UWB Ranging Session Key (URSK), and may be abbreviated as a session key.
- URSK UWB Ranging Session Key
- Hybrid ranging may be used when there is a known controllee and an unknown controllee.
- the known controllee may be a controllee whose media access control (MAC) address is known to the controller
- the unknown controllee may be a controllee whose MAC address is not known to the controller.
- hybrid ranging may be referred to as hybrid-based ranging.
- the scheduling mode in which hybrid ranging is used may be referred to as a hybrid-based mode.
- the ranging round may include a ranging control phase (RC)P and a ranging phase (RP).
- the RP may include a contention free period for scheduling-based ranging (access) and a contention access period (CAP) for contention-based ranging (access).
- the control message (ranging control message) used in the RCP of the hybrid-based mode may be referred to as a ranging management message (RMM).
- UWB message may be a message including a payload IE transmitted by the UWB device (e.g., ERDEV).
- the UWB message may be such a message as, e.g., ranging initiation message (RIM), ranging response message (RRM), ranging final message (RFM), control message (CM), measurement report message (MRM), ranging result report message (RRRM), control update message (CUM) or one-way ranging (OWR) message. If necessary, a plurality of messages may be merged into one message.
- Payload IE may be referred to as a payload information element and may be included in the MAC payload of the UWB MAC frame defined in IEEE 802.15.4/4z.
- the MAC payload may include a plurality of payload IEs.
- Data Message IE (Data Message Payload IE)
- Application data may be data transferred from a framework or application above the UWB MAC Layer.
- the Data Message IE may be used in a two-way ranging (TWR) procedure.
- the ranging message (UWB message) may include at least one or both of the payload IE for ranging and the Data Message IE for application data transfer.
- the Data Message IE may be included and transmitted as part of the payload IE of the MAC payload of a ranging initiation message (RIM) for ranging, a ranging response message (RRM), a ranging final message (RFM), a measurement report message (MRM) and ranging result report message (RRRM).
- RIM ranging initiation message
- RRM ranging response message
- RRM ranging final message
- MRM measurement report message
- RRRM ranging result report message
- AoA is the angle of arrival of a reception signal, and may be expressed as a relative angle, such as AoA azimuth and AoA elevation.
- the measuring device is a mobile phone with a display
- the Y axis is the vertical display axis of the phone
- the X axis is the horizontal display axis of the phone
- the Z axis is perpendicular to the phone display.
- the AoA azimuth angle may be a relative angle between the input signal projected on the XZ plane and the Z axis
- the AoA elevation angle may be a relative angle between the input signal and the XZ plane.
- the controller may measure the AoA elevation for the RRM, and may transmit the measured AoA elevation through the UCI notification message.
- the controllee may measure the AoA elevation for the RIM message, and may transmit the measured AoA elevation through the RRRM.
- the electronic device 100 of FIG. 1 may be a UWB electronic device.
- the electronic device 100 may be the Advertiser or Observer described herein.
- the Advertiser may be a device that transmits (or broadcasts) the Advertisement Message
- the Observer may be a device that receives the Advertisement Message transmitted by the Advertiser.
- the UWB-enabled application layer (or application) 110 may communicate with the UWB framework 120 through the first interface (e.g., Framework (application programming interface (API))).
- the UWB-enabled application layer 110 may use predetermined performance/functions through the first interface.
- the UWB-enabled application layer 110 may support at least one of a function for UWB ADVERTISEMENT, service discovery, a UWB session configuration trigger function, or a ranging notification function.
- the UWB subsystem (component) (UWBS) 130 may be used to communicate with another electronic device to perform at least one of a function for UWB ADVERTISEMENT, a function for UWB ranging and transaction, or a function for location estimation.
- the UWBS 130 may communicate with the UWB subsystem of another device to transmit or receive the aforementioned UWB message (e.g., Advertisement Message).
- the Advertiser (or Advertiser device) may be a UWB electronic device.
- the Advertiser may correspond to the electronic device of FIG. 1, include the electronic device of FIG. 1, or may be an electronic device that may include part of the electronic device of FIG. 1.
- the Advertiser may be a device that transmits or broadcasts an Advertisement message to the Observer.
- the Advertiser may include a transceiver 210, a controller 220, and a storage unit 230.
- the controller may be defined as a circuit or application-specific integrated circuit or at least one processor.
- the transceiver 210, the controller 220, and the storage unit 230 need not necessarily be included, and according to implementation, only at least one unit may be included.
- the transceiver 210 may transmit/receive a signal to/from another entity or device.
- the transceiver 210 may transmit/receive data to/from another device through, e.g., UWB communication and/or OOB communication (e.g., BLE).
- UWB communication e.g., UWB communication and/or OOB communication (e.g., BLE).
- OOB communication e.g., BLE
- the transceiver 210 may transmit (broadcast) a UWB message (e.g., an Advertisement Message) to the Observer through UWB communication.
- the controller 220 may control the overall operation of the electronic device according to an embodiment.
- the controller 220 may control the signal flow between the blocks to perform the above-described operation for UWB ADVERTISEMENT.
- the controller 220 may control, e.g., an operation for setting parameters for UWB ADVERTISEMENT (e.g., setting UWB configuration parameters and/or Application Configuration Parameters) and/or an operation for generating and transmitting a UWB message.
- FIG. 3 is a view illustrating a structure of an observer according to an embodiment of the disclosure.
- the Observer may be a UWB electronic device.
- the Observer may correspond to the electronic device of FIG. 1, include the electronic device of FIG. 1, or may be an electronic device that may include part of the electronic device of FIG. 1.
- the Observer may be a device that receives the advertisement message transmitted or broadcast by the Advertiser.
- the Observer may include a transceiver 310, a controller 320, and a storage unit 330.
- the controller may be defined as a circuit or application-specific integrated circuit or at least one processor.
- the transceiver 310, the controller 320, and the storage unit 330 need not necessarily be included, and according to implementation, only at least one unit may be included.
- the UWB device may transmit/receive UWB messages.
- the first UWB device may transmit (or broadcast) a UWB message that is an advertisement message
- the second UWB device may receive the UWB message.
- the UWB message may include at least one of a Header IE or a Payload IE.
- a Header IE may be configured in the form shown in Table 1 below.
- the Header IE of the UWB message may include a length field indicating the size of the content field, an element ID field indicating the identifier of the element, a TYPE field indicating the type, and/or a Content field including the UWB message content.
- Payload IE may include a length field indicating the size of the content field, a group ID field indicating the identifier of the group, a type field indicating being the Payload IE, and/or a Content field including UWB message content.
- the UWB message IDs may be defined in Table 3 for each UWB Messages. There could be multiple types for each UWB messages and what type will be used for each UWB messages should be specified via a Common Service and Management (CSM) layer.
- CSM Common Service and Management
- UWB message ID UWB Message Format subclause 0x0 Ranging Initiation Message section 5.9.1 0x1 Ranging Response Message section 5.9.2 0x2 Ranging Final Message section 5.9.3 0x3 Control message section 5.9.4 0x4 Measurement report message section 5.9.5, section 5.9.6 0x5 Ranging result report message section 5.9.7 0x Control Update Message section 5.9.8 0x7 Advertisement Message Section 5.9.9 0x7 ⁇ 0xF Reserved for other UWB messages N/A
- UWB Message may include Ranging Initiation Message, Ranging Response Message, Ranging Final Message, Control message, Measurement report message, Ranging result report message, Control Update Message, Advertisement Message, and Reserved for other UWB messages.
- the Advertisement Message may be a UWB Message for UWB Advertisement.
- the Advertisement Message may be used to measure angle-of-arrival (AoA).
- the Advertisement Message may be referred to as an AoA measurement message.
- the Advertisement Message may be referred to as a one way ranging (OWR) message.
- Octets 2 2/8 0/2/8 variable variable 2/4 Frame Control SourceAddress Destination Address Header IE Payload IE FCS MAC header MAC payload MAC footer
- the Frame control field may include the format shown in Table 5.
- Frame Type 3 0b001: Data Security Enabled 1 0b0: Auxiliary Security Header is not present Frame Pending 1 0b0: No pending frame for the recipient AR 1 0b0: No ACK frame is required PAN ID Compression 1 1: Destination PAN ID field and Source PAN ID field are not present Reserved 1 0b0 Sequence Number Suppression 1 0b0: Sequence number field is present IE Present 1 0b1: Header IE and Payload IE are contained in the frame Destination Addressing Mode 2 0b00: Destination address field is not present 0b10: Destination address field contains short address 0b11: Destination address field contains extended address Frame Version 2 0b10: IEEE Std 802.15.4-2020 Source Addressing Mode 2 0b10: Source address field contains short address 0b11: Source address field contains extended address
- frame control field may include at least one of frame type field, security enabled field, frame pending field, AR field, PAN ID compression field, reserved field, sequence number suppression field, IE Present field, destination addressing mode field, frame version field, or source addressing mode field.
- an example of the content field of the Payload IE may be shown in Table 6.
- Payload IE Content field may include at least one parameter/field (e.g., Vendor organizationally unique identifier (OUI), UWB message ID, Class, Advertisement Data Type Length, Advertisement Data Type, Advertisement Data Length, and/or Advertisement Data).
- UUI Vendor organizationally unique identifier
- UWB message ID e.g., Vendor organizationally unique identifier (OUI)
- UWB message ID e.g., Vendor organizationally unique identifier (OUI)
- UWB message ID e.g., Vendor organizationally unique identifier (OUI), UWB message ID, Class, Advertisement Data Type Length, Advertisement Data Type, Advertisement Data Length, and/or Advertisement Data.
- UWB message ID field may indicate the type of message. In case that the UWB message ID field is set to 0x7, the UWB message is Advertisement message.
- Advertisement Data Type Length field may indicate Length of Advertisement Data Type field (in octets).
- Advertisement Data Type field may indicate a type of the advertisement data.
- Advertisement Data Length field may indicate a length of Advertisement Data field (in octets).
- identifier of an application (AID) of the application can be used to specify the parameter value of the Advertisement Data Type.
- Additional suffix (e.g., "+json") to the Media Type can be used to represent the syntax of the Advertisement Data as defined in [RFC6839].
- Advertisement Data Type application/vnd.com.example.android.app_A+json
- Observer executes the application mapped to Application Media Type, by using Advertisement Data as the parameters of the application. It is implementation dependent when the application mapped to Application Media Type does not exist on Observer. Observer may ask user to select the application to be executed or may launch a System Application (e.g., App Store, etc.) for users to download the application.
- a System Application e.g., App Store, etc.
- the fields of the Advertisement Message are set via UCI.
- UWB configuration parameters in Table 7 should be configured via UCI.
- UWB configuration parameters As listed in Table 7 are negotiated between UWB devices.
- the Controlee may provide its capability for optional features and its MAC address, and the Controller determines and transmits the UWB configuration parameters to the Controlee.
- the UWB configuration parameters are configured to UWBS of the UWB device via UCI.
- Session ID Identifier for UWB session this is a 32bit integer number transmitted as part of Header IE.
- Ranging Method Supported Ranging round usage are: Advertising and Observing Mode Device Role Role of the device: Transmitter Receiver Device Type Type of device: Advertiser Observer RFRAME Configuration ToF Report AoA Azimuth Report AoA Elevation Report AoA FOM Report Round Hopping Block Striding Block Duration Round Duration Slot Duration Channel Number Preamble Code Index PRF Mode SP0 PHY Set# SP1 PHY Set# SP3 PHY Set# Max RR Retry Constraint Length of Convolutional Code UWB Initiation Time Block Timing Stability Key Rotation Key Rotation Rate MAC FCS Type MAC Address Mode Device MAC Address Number of Controlees DST MAC Addresses STS Config The MAC security feature allows applications to configure the STS generation methods and the possible configurations are:Fixed STS
- UWB configuration parameters may include at least one of Session ID, Ranging Method, Device Role, Device Type, RFRAME Configuration, ToF Report, AoA Azimuth Report, AoA Elevation Report, AoA FOM Report, Round Hopping, Block Striding, Block Duration, Round Duration, Slot Duration, Channel Number, Preamble Code Index, PRF Mode, ,SP0 PHY Set#, SP1 PHY Set#, SP3 PHY Set#, Max RR Retry, Constraint Length of Convolutional Code, UWB Initiation Time, Block Timing Stability, Key Rotation, Key Rotation Rate, MAC FCS Type, MAC Address Mode, Device MAC Address, Number of Controlees, DST MAC Addresses, or STS ConFIG.
- the ranging method may include Advertising and observing mode
- the device role may include transmitter and receiver
- the device type may include Advertiser and Observer
- the STS config may include Fixed STS.
- the transmitter is device that transmits a data frame and the receiver is a Device that receives a RFRAME or data frame.
- UCI may be used for interfacing between UWBS and the UWB framework (or host).
- UCI may be used in UWBS and UWB frameworks for UWB session management (e.g., establishment of a ranging session).
- the control message(s) is required to start/ stop the UWB session.
- the Session State shall be in SESSION_STATE_IDLE before starting the session.
- the Host UWBS shall generate the ranging results (RANGE_DATA_NTF) notification when Session State is in SESSION_STATE_ACTIVE.
- the ranging data notification may include sequence number field, session ID field, RCR indication field, current ranging interval field, ranging measurement type field, MAC addressing mode indicator field, number of ranging measurements field, and/or ranging measurements field (ranging measurement result field).
- a plurality of advertising and observing measurement results of Table 9 may be included in the Ranging Measurement field according to the number of UWB messages transmitted by the advertiser in one ranging round.
- the measurement type field may include 0x03: advertising and observing measurement, Advertising and observing, and AoA measurement is allowed.
- the number of ranging measurements field may include the Advertising and Observing measurements.
- the advertising and observing measurement result of the Ranging Measurements field may include a Payload field as shown in Table 9.
- Advertisement Data Type length 1 Octets Length of Advertisement Data Type field (in octets) Advertisement Data Type Variable (as specified in Advertisement Data Type length) Type of data format contained in Advertisement Data Advertisement Data length 2 Octets Length of Advertisement Data field (in octets) Advertisement Data Variable (as specified in Advertisement Data length) Data which of type corresponds to Advertisement Data Type field
- the MAC address may indicate short address of the participating device.
- NLoS field may indicate if the ranging measurement was in Line of sight or non-line of sight.
- the AoA Azimuth field may indicate the Azimuth in degrees.
- the AoA elevation field may indicate the elevation in degrees.
- Advertisement Data Type length field may indicate Length of Advertisement Data Type field (in octets).
- Advertisement Data Type field may indicate type of data format contained in Advertisement Data.
- Advertisement Data length field may indicate Length of Advertisement Data field (in octets).
- Advertisement Data field may indicate Data which of type corresponds to Advertisement Data Type field.
- the command e.g., SET_ADVERTISEMENT_DATA_CMD
- the command shall be used for Advertiser to set data to be contained in Advertisement Message.
- the SET_ADVERTISEMENT_DATA_CMD may include at least one of Advertisement Data Type length field, Advertisement Data Type field, Advertisement Data length field, or Advertisement Data field.
- the Advertisement Data Type length field may indicate Length of Advertisement Data Type field (in octets).
- the Advertisement Data Type field may indicate Type of data format contained in Advertisement Data.
- the Advertisement Data length field may indicate Length of Advertisement payload field (in octets).
- the Advertisement Data field may indicate Data which of type corresponds to Advertisement Data Type field.
- the advertiser may set data of the advertisement message based on the command.
- the application configuration parameters may include at least one of DEVICE_TYPE, RANGING_ROUND_USAGE, STS_CONFIG, MULTI_NODE_MODE, CHANNEL_NUMBER, NUMBER_OF_CONTROLEES, DEVICE_MAC_ADDRESS, DST_MAC_ADDRESS, SLOT_DURATION, RANGING_INTERVAL (*), STS_INDEX, MAC_FCS_TYPE, RANGING_ROUND_CONTROL, AOA_RESULT_REQ, RANGE_DATA_NTF_CONFIG (*), RANGE_DATA_NTF_PROXIMITY_NEAR (*),RANGE_DATA_NTF_PROXIMITY_FAR (*), DEVICE_ROLE, RFRAME_CONFIG, PREAMBLE_CODE_INDEX, SFD_ID, PSDU_DATA_RATE, PREAMBLE_DURATION, RANGING_TIME_STRUCT,
- FIG. 4 is a flowchart illustrating an operation for providing an advertisement by a UWB device according to an embodiment of the disclosure.
- the UWB device may configure the UWB device as an advertiser (410).
- the UWB configuration of Table 7 or the application configuration of Table 11 of the disclosure may be received or configured based thereon.
- the UWB device may transmit (or broadcast) a UWB message for advertisement (420).
- the UWB message may include at least one of a class field indicating a class of a data format included in an advertisement data field, a data type length field indicating a length of an advertisement data type field, the advertisement data type field indicating a type of advertise data, an advertisement data length field indicating a length of an advertisement data field, or the advertisement data field including the advertise data.
- the UWB message may be used for measuring an AoA.
- the UWB message may include fields according to Table 6.
- a UWB subsystem of a second UWB device receiving the UWB message may transfer a notification related to a ranging measurement based on the UWB message to a UWB framework of the second UWB device via UWB command interface (UCI).
- the notification may include a ranging measurement type field indicating a type of the ranging measurement and a ranging measurement result depending on the type of the ranging measurement.
- the second UWB device may be configured as an observer.
- the ranging measurement type field may be set to a value indicating a type for AoA measurement of the observer.
- the ranging measurement result may include at least one of a non-line of sight (NLoS) field indicating whether the ranging measurement is in line of sight (LoS) or non-line of sight, an AoA azimuth field indicating an AoA azimuth, an AoA azimuth figure of merit (FOM) field indicating a reliability of the AoA azimuth in the AoA azimuth field, an AoA elevation field indicating an AoA elevation, or an AoA elevation figure of merit (FOM) field indicating a reliability of the AoA elevation in the AoA elevation field.
- NNLoS non-line of sight
- AoA azimuth field indicating an AoA azimuth
- AOM AoA azimuth figure of merit
- FOM AoA elevation figure of merit
- the operations of the flowchart illustrated in FIG. 5 may be performed by a UWB device (or the second UWB device) or an observer device of the disclosure.
- the UWB device may configure the UWB device as an observer (510).
- the UWB configuration of Table 7 or the application configuration of Table 11 of the disclosure may be received or configured based thereon.
- the UWB device may receive a UWB message for advertisement (520) from other UWB device.
- the UWB message may include at least one of a class field indicating a class of a data format included in an advertisement data field, a data type length field indicating a length of an advertisement data type field, the advertisement data type field indicating a type of advertise data, an advertisement data length field indicating a length of an advertisement data field, or the advertisement data field including the advertise data.
- the UWB message may be used for measuring an AoA.
- the ranging measurement type field may be set to a value indicating a type for AoA measurement of the observer.
- the ranging measurement result may include at least one of a non-line of sight (NLoS) field indicating whether the ranging measurement is in line of sight (LoS) or non-line of sight, an AoA azimuth field indicating an AoA azimuth, an AoA azimuth figure of merit (FOM) field indicating a reliability of the AoA azimuth in the AoA azimuth field, an AoA elevation field indicating an AoA elevation, or an AoA elevation FOM field indicating a reliability of the AoA elevation in the AoA elevation field.
- NNLoS non-line of sight
- AoA azimuth field indicating an AoA azimuth
- AOM AoA azimuth figure of merit
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Abstract
Description
| Parameter | Size (bits) | Notes |
| Length | 7 | Size of Content field |
| Element ID | 8 | 0=Vendor Specific |
| Type | ||
| 1 | 0=Header IE | |
| Content | Variable | UWB message content |
| Parameter | Size (bits) | Notes |
| Length | 11 | Size of Content field |
| Group ID | 4 | 2=Vendor Specific |
| Type | ||
| 1 | 1=Payload IE | |
| Content | Variable | UWB message content |
| UWB message ID | UWB Message | Format subclause |
| 0x0 | Ranging Initiation Message | section 5.9.1 |
| 0x1 | Ranging Response Message | section 5.9.2 |
| 0x2 | Ranging Final Message | section 5.9.3 |
| 0x3 | Control message | section 5.9.4 |
| 0x4 | Measurement report message | section 5.9.5, section 5.9.6 |
| 0x5 | Ranging result report message | section 5.9.7 |
| 0x | Control Update Message | section 5.9.8 |
| 0x7 | Advertisement Message | Section 5.9.9 |
| 0x7~0xF | Reserved for other UWB messages | N/A |
| Octets: 2 | 2/8 | 0/2/8 | | variable | 2/4 | |
| Frame Control | SourceAddress | Destination Address |
Header IE | Payload IE | FCS | |
| MAC header | MAC payload | MAC footer | ||||
| Field | Size (bits) | Notes |
| Frame Type | 3 | 0b001: Data |
| Security Enabled | 1 | 0b0: Auxiliary Security Header is not |
| Frame Pending | ||
| 1 | 0b0: No pending frame for the | |
| AR | ||
| 1 | 0b0: No ACK frame is required | |
| |
1 | 1: Destination PAN ID field and Source PAN ID field are not present |
| Reserved | 1 | 0b0 |
| |
1 | 0b0: Sequence number field is |
| IE Present | ||
| 1 | 0b1: Header IE and Payload IE are contained in the frame | |
| |
2 | 0b00: Destination address field is not present 0b10: Destination address field contains short address 0b11: Destination address field contains extended |
| Frame Version | ||
| 2 | 0b10: IEEE Std 802.15.4-2020 | |
| |
2 | 0b10: Source address field contains short address 0b11: Source address field contains extended address |
| Parameter | Size (bits) | Notes |
| Vendor OUI | 24 | 0x5A18FF |
| UWB message ID | 4 | 0x7=Advertisement Message |
| Class | 8 | A class of data format contained in Advertisement Data 0x00: RFU 0x01: URI as defined in RFC 3986 0x02: Media Types as defined in RFC 6838 0x03-0xFE: RFU 0xFF: Vendor-defined type |
| Advertisement Data Type Length | 8 | Length of Advertisement Data Type field (in octets) |
| Advertisement Data Type | Variable | If URI (0x01) is used, absolute URI as defined in [RFC 3986]. If Media Types (0x02) is used, media type as defined in [RFC 2046]. |
| Advertisement Data Length | 16 | Length of Advertisement Data field (in octets) |
| Advertisement Data | Variable | Data which of type corresponds to Type field |
| Parameter | Notes |
| Session ID | Identifier for UWB session, this is a 32bit integer number transmitted as part of Header IE. |
| Ranging Method | Supported Ranging round usage are: Advertising and Observing Mode |
| Device Role | Role of the device: Transmitter Receiver |
| Device Type | Type of device: Advertiser Observer |
| RFRAME Configuration | |
| ToF Report | |
| AoA Azimuth Report | |
| AoA Elevation Report | |
| AoA FOM Report | |
| Round Hopping | |
| Block Striding | |
| Block Duration | |
| Round Duration | |
| Slot Duration | |
| Channel Number | |
| Preamble Code Index | |
| PRF Mode | |
| SP0 PHY Set# | |
| SP1 PHY Set# | |
| SP3 PHY Set# | |
| Max RR Retry | |
| Constraint Length of Convolutional Code | |
| UWB Initiation Time | |
| Block Timing Stability | |
| Key Rotation | |
| Key Rotation Rate | |
| MAC FCS Type | |
| MAC Address Mode | |
| Device MAC Address | |
| Number of Controlees | |
| DST MAC Addresses | |
| STS Config | The MAC security feature allows applications to configure the STS generation methods and the possible configurations are:Fixed STS |
| RANGE_DATA_NTF | ||
| Payload Field(s) | Length | Value/ Description |
| Sequence Number | 4 Octets | |
| Session ID | 4 | |
| RCR Indication | ||
| 1 Octet | ||
| Current Ranging Interval | 4 | |
| Ranging MeasurementType | ||
| 1 Octet | 0x00: RFU 0x01: Two Way Ranging Measurement (SS-TWR, DS-TWR) 0x02 : Downlink TDoA 0x03 : Advertising and Observing | |
| RFU | ||
| 1 Octet | ||
| MAC Addressing |
1 Octet | |
| RFU | 8 Octets | |
| Number of Ranging |
1 Octet | M: Number of ranging measurements to follow.M = 1 for "Single device to Single device" (Controller/Controlee) M = N for Multicast DS-TWR with N Controlees M = (0 <= N) Downlink TDoA measurements in a given Ranging Round. The value of 0 indicates that there is no valid Downlink TDoA Measurement M = 1(or K) for Advertising and Observing measurements |
| Ranging Measurements | M*ranging meas. Size | Advertisement & Observing Measurement Result |
| Advertisement & Observing Measurement | ||
| Payload Field(s) | Length |
Value/ |
| MAC address | ||
| 2/8 Octets | Short address of the participating device2 Octets short address if MAC addressing mode indicator = 0x00. 8 Octets extended address if MAC addressing mode indicator = | |
| Status | ||
| 1 Octet | For various status values refer Table 32.If status field is other than STATUS_OK, then all other values except for MAC address shall be ignored | |
| |
1 Octet | Indicates if the ranging measurement was in Line of sight or non-line of sight.0x00 = LoS 0x01 = NLoS 0x02 to 0xEF = RFU 0xFF = Unable to determine |
| |
2 Octets | AoA Azimuth in degrees and it is a signed value in Q9.7 format. This field is zero if AOA_RESULT_REQ = 0. |
| |
1 Octet | The AoA Azimuth FOM field conveys the reliability of the estimated AOA Azimuth. FOM goes from 0 to 100. Higher values indicate better quality AoA estimates. Lower values suggest decreased reliability in the estimates. |
| |
2 Octets | AoA Elevation in degrees and it is a signed value in Q9.7 format. This field is zero if AOA_RESULT_REQ = 0. |
| |
1 Octet | The AoA Elevation FOM field conveys the reliability of the estimated AOA Elevation. FOM goes from 0 to 100. Higher values indicate better quality AoA estimates. Lower values suggest decreased reliability in the estimates. |
| Advertisement |
1 Octets | Length of Advertisement Data Type field (in octets) |
| Advertisement Data Type | Variable (as specified in Advertisement Data Type length) | Type of data format contained in Advertisement Data |
| |
2 Octets | Length of Advertisement Data field (in octets) |
| Advertisement Data | Variable (as specified in Advertisement Data length) | Data which of type corresponds to Advertisement Data Type field |
| SET_ADVERTISEMENT_DATA_CMD | ||
| Payload Field(s) | Length | Value/ Description |
| Advertisement |
1 Octets | Length of Advertisement Data Type field (in octets) |
| Advertisement Data Type | Variable (as specified in Advertisement Data Type length) | Type of data format contained in Advertisement Data |
| |
2 Octets | Length of Advertisement payload field (in octets) |
| Advertisement Data | Variable (as specified in Advertisement Data length) | Data which of type corresponds to Advertisement Data Type field |
|
Parameter Name
(*): Can be applied during session active state as well |
Length
(Octets) |
Tag
(IDs) |
Description
Note: unassigned values are reserved for future use |
Advertiser |
| |
| DEVICE_TYPE | ||||||
| 1 | 0x00 | 0x00 = Controlee 0x01 = Controller 0x02 = Advertiser 0x03 = Observer Values 0x04 to 0xFF = RFU |
0x02 | 0x03 | ||
| |
1 | 0x01 | 0x00= RFU 0x01= SS-TWR with Deferred Mode 0x02= DS-TWR with Deferred Mode (default) 0x03= SS-TWR with Non-deferred Mode 0x04= DS-TWR with Non-deferred Mode 0x05= Downlink TDOA 0x06= Advertising and Observing Mode 0x07 to 0xFF = RFU |
0x06 | 0x06 | |
| |
1 | 0x02 | This parameter indicates how system shall generate the STS. 0x00= Static STS (default) 0x01= Dynamic STS 0x02= Dynamic STS for Controlee Individual Key 0x03= Fixed STS Values 0x04 to 0xFF = RFU |
0x03 | 0x03 | |
| |
1 | | ||||
| CHANNEL_NUMBER | ||||||
| 1 | | |||||
| NUMBER_OF_CONTROLEES | ||||||
| 1 | | |||||
| DEVICE_MAC_ADDRESS | ||||||
| 2/8 | | |||||
| DST_MAC_ADDRESS | ||||||
| 2/8*N | 0x07 | |||||
| |
2 | 0x08 | Unsigned integer that specifies duration of a ranging slot in the unit of RSTU (default = 2400) In case of Advertisement, this parameter is used for configuring the time window for random delay. Note. the interval of advertisement message transmission is defined as RANING_INTERVAL+[0,SLOT_DURATION] |
2400 | NA | |
| RANGING_INTERVAL (*) | 4 | 0x09 | Ranging interval in the unit of 1200 RSTU which is 1 ms between beginning of one ranging round to the beginning of the next. Minimum Ranging interval should be at least the duration of one ranging round length. Mapping of ranging interval can be referred in section 7.5.1.1(default = 200) In case of block based ranging this parameter is used for configuring block duration In case of Advertisement, this parameter is used for configuring the fixed duration of interval between advertisement messages Note. the interval of advertisement message transmission is defined as RANING_INTERVAL+[0,SLOT_DURATION] |
200 | NA | |
| STS_INDEX | | 0x0A | ||||
| MAC_FCS_TYPE | ||||||
| | 0x0B | |||||
| RANGING_ROUND_CONTROL | ||||||
| | 0x0C | |||||
| AOA_RESULT_REQ | ||||||
| 1 | 0x0D | |||||
| RANGE_DATA_NTF_CONFIG (*) | 1 | 0x0E | ||||
| RANGE_DATA_NTF_PROXIMITY_NEAR (*) | 2 | 0x0F | ||||
| RANGE_DATA_NTF_PROXIMITY_FAR (*) | 2 | | ||||
| DEVICE_ROLE | ||||||
| 1 | 0x11 | 0x00 = Responder0x01 = Initiator 0x02: Initiator & Responder 0x03 : Receiver 0x04 : Transmitter 0x05 = Advertiser 0x06 = Observer Values 0x07 to 0xFF = RFU |
0x04 | 0x03 | ||
| |
1 | | ||||
| PREAMBLE_CODE_INDEX | ||||||
| 1 | | |||||
| SFD_ID | ||||||
| 1 | | |||||
| PSDU_DATA_RATE | ||||||
| 1 | | |||||
| PREAMBLE_DURATION | ||||||
| 1 | | |||||
| RANGING_TIME_STRUCT | ||||||
| 1 | | |||||
| SLOTS_PER_RR | ||||||
| | 0x1B | |||||
| TX_ADAPTIVE_PAYLOAD_POWER | ||||||
| | 0x1C | |||||
| RESPONDER_SLOT_INDEX | ||||||
| | 0x1E | |||||
| PRF_MODE | ||||||
| | 0x1F | |||||
| SCHEDULED_MODE | ||||||
| 1 | | |||||
| KEY_ROTATION | ||||||
| 1 | | |||||
| KEY_ROTATION_RATE | ||||||
| 1 | | |||||
| SESSION_PRIORITY | ||||||
| 1 | | |||||
| MAC_ADDRESS_MODE | ||||||
| 1 | | |||||
| VENDOR_ID | ||||||
| 2 | 0x27 | |||||
| STATIC_STS_IV | 6 | | ||||
| NUMBER_OF_STS_SEGMENTS | ||||||
| 1 | | |||||
| MAX_RR_RETRY | ||||||
| 2 | 0x2A | |||||
| UWB_INITIATION_TIME | | 0x2B | ||||
| HOPPING_MODE | ||||||
| | 0x2C | |||||
| BLOCK_STRIDING | ||||||
| | 0x2D | |||||
| RESULT_REPORT_CONFIG | ||||||
| | 0x2E | |||||
| IN_BAND_TERMINATION_ATTEMPT_COUNT | ||||||
| 1 | 0x2F | |||||
| SUB_SESSION_ID | 4 | | ||||
| BPRF_PHR_DATA_RATE | ||||||
| 1 | | |||||
| MAX_NUMBER_OF_MEASUREMENTS | ||||||
| 2 | | |||||
| STS_LENGTH | ||||||
| 1 | 0x35 | |||||
| RFU | 0x130x18 0x19 0x1D 0x20 0x21 0x35-0x9F |
|||||
| Reserved for Vendor Specific | 0xA0-DF | |||||
| Reserved for extension of IDs | ||||||
| ID is 2 Octets in length |
0xE0-0xE2 | ID is 2 Octets in length. Refer section 8.1 for details | ||||
| Reserved for Vendor Specific Use | ||||||
| Vendor Specific App Configs |
0xE3-0xFF | Vendor Specific ID space | ||||
Claims (15)
- A method performed by a first ultra-wideband (UWB) device in a wireless communication, the method comprising:configuring the first UWB device as an advertiser; andtransmitting a UWB message for advertisement,wherein the UWB message is used for measuring an angle of arrival (AoA).
- The method of claim 1, wherein the UWB message includes at least one of:a class field indicating a class of a data format included in an advertisement data field,a data type length field indicating a length of an advertisement data type field,the advertisement data type field indicating a type of advertise data,an advertisement data length field indicating a length of an advertisement data field, orthe advertisement data field including the advertise data.
- The method of claim 1,wherein a UWB subsystem of a second UWB device receiving the UWB message transfers a notification related to a ranging measurement based on the UWB message to a UWB framework of the second UWB device via UWB command interface (UCI), andwherein the notification includes a ranging measurement type field indicating a type of the ranging measurement and a ranging measurement result depending on the type of the ranging measurement.
- The method of claim 3, wherein the second UWB device is configured as an observer.
- The method of claim 4, wherein the ranging measurement type field is set to a value indicating a type for an AoA measurement of the observer.
- The method of claim 3, wherein the ranging measurement result includes at least one of:a non-line of sight (NLoS) field indicating whether the ranging measurement is in line of sight (LoS) or non-line of sight,an AoA azimuth field indicating an AoA azimuth,an AoA azimuth figure of merit (FOM) field indicating a reliability of the AoA azimuth in the AoA azimuth field,an AoA elevation field indicating an AoA elevation, oran AoA elevation FOM field indicating a reliability of the AoA elevation in the AoA elevation field.
- A method performed by a second ultra-wideband (UWB) device in a wireless communication, the method comprising:configuring the second UWB device as an observer; andreceiving, from a first UWB device, a UWB message for advertisement,wherein the UWB message is used for measuring an angle of arrival (AoA).
- The method of claim 7, wherein the UWB message includes at least one of:a class field indicating a class of a data format included in an advertisement data field,a data type length field indicating a length of an advertisement data type field,the advertisement data type field indicating a type of advertise data,an advertisement data length field indicating a length of an advertisement data field, orthe advertisement data field including the advertise data.
- The method of claim 7,wherein a UWB subsystem of the second UWB device receiving the UWB message transfers a notification related to a ranging measurement based on the UWB message to a UWB framework of the second UWB device via UWB command interface (UCI), andwherein the notification includes a ranging measurement type field indicating a type of the ranging measurement and a ranging measurement result depending on the type of the ranging measurement.
- The method of claim 9, wherein the first UWB device is configured as an advertiser, andwherein the ranging measurement type field is set to a value indicating a type for an AoA measurement of the observer.
- The method of claim 9, wherein the ranging measurement result includes at least one of:a non-line of sight (NLoS) field indicating whether the ranging measurement is in line of sight (LoS) or non-line of sight,an AoA azimuth field indicating an AoA azimuth,an AoA azimuth figure of merit (FOM) field indicating a reliability of the AoA azimuth in the AoA azimuth field,an AoA elevation field indicating an AoA elevation, oran AoA elevation FOM field indicating a reliability of the AoA elevation in the AoA elevation field.
- A first ultra-wideband (UWB) device in a wireless communication, the first UWB comprising:transceiver; andat least one processor electrically coupled with the transceiver,wherein the at least one processor is configured to:configure the first UWB device as an advertiser, andtransmit a UWB message for advertisement, andwherein the UWB message is used for measuring an angle of arrival (AoA).
- The first UWB device of claim 12, wherein the at least one processor is further configured to operate methods according to claims 2 to 6.
- A second ultra-wideband (UWB) device in a wireless communication, the second UWB comprising:transceiver; andat least one processor electrically coupled with the transceiver,wherein the at least one processor is configured to:configure the second UWB device as an observer, andreceive, from a first UWB device, a UWB message for advertisement, andwherein the UWB message is used for measuring an angle of arrival (AoA).
- The second UWB device of claim 14, wherein the at least one processor is further configured to operate methods according to claims 8 to 11.
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| CN202280041585.4A CN117480795A (en) | 2021-06-15 | 2022-06-15 | Method and apparatus for UWB communication |
| EP22825313.4A EP4335130A4 (en) | 2021-06-15 | 2022-06-15 | Method and device for uwb communication |
| KR1020247001293A KR20240021281A (en) | 2021-06-15 | 2022-06-15 | Method and apparatus for ultra-wideband communication |
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| KR10-2021-0077602 | 2021-06-15 | ||
| KR20210077602 | 2021-06-15 |
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| EP (1) | EP4335130A4 (en) |
| KR (1) | KR20240021281A (en) |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2024149382A1 (en) * | 2023-01-13 | 2024-07-18 | 华为技术有限公司 | Information transmission method and apparatus |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR20230021644A (en) * | 2020-06-09 | 2023-02-14 | 삼성전자주식회사 | Method and apparatus for exchanging service information in ultra-broadband system |
| US12352879B1 (en) * | 2021-08-25 | 2025-07-08 | Amazon Technologies, Inc. | Expanding angle-of-arrival (AoA) coverage with switching between three or more antennas for ultra-wideband (UWB) devices |
| US20240049230A1 (en) * | 2022-08-08 | 2024-02-08 | Meta Platforms Technologies, Llc | Systems and methods of uwb configuration for application types |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2013179195A1 (en) * | 2012-05-30 | 2013-12-05 | Nokia Corporation | Method, apparatus, and computer program product for high accuracy location determination |
| WO2017198037A1 (en) * | 2016-05-17 | 2017-11-23 | 安徽酷哇机器人有限公司 | Uwb positioning system based on aoa |
| US10142778B2 (en) * | 2016-01-07 | 2018-11-27 | Qualcomm Technologies International, Ltd. | Direction finding for legacy bluetooth devices |
| US10305540B2 (en) * | 2010-03-22 | 2019-05-28 | Decawave Limited | Measuring angle of incidence in an ultrawideband communication system |
| US20190317177A1 (en) | 2018-04-17 | 2019-10-17 | Apple Inc. | Electronic Devices with Motion Sensing and Angle of Arrival Detection Circuitry |
| US20200100283A1 (en) | 2018-09-25 | 2020-03-26 | Apple Inc. | Medium access control and channel access for access operations |
| CN112822325A (en) | 2021-01-25 | 2021-05-18 | Oppo广东移动通信有限公司 | Positioning display control method and related device |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US10942249B2 (en) * | 2017-12-22 | 2021-03-09 | Nxp B.V. | Method and system for determining a location of a mobile device |
| US11272559B2 (en) * | 2018-10-25 | 2022-03-08 | Denso International America, Inc. | System and method of determining real-time location |
| US11693109B2 (en) * | 2019-05-10 | 2023-07-04 | Samsung Electronics Co., Ltd. | Framework and method for acknowledging multiple messages in UWB communication and ranging systems |
| US11425531B2 (en) * | 2019-11-06 | 2022-08-23 | Huawei Technologies Co., Ltd. | Connectivity-based positioning determination in wireless communication networks |
| US11647356B2 (en) * | 2020-10-13 | 2023-05-09 | International Business Machines Corporation | Proximity positioning |
| US12085657B2 (en) * | 2021-06-04 | 2024-09-10 | Apple Inc. | Techniques to disambiguate angle of arrival |
-
2022
- 2022-06-15 US US17/841,134 patent/US20220404448A1/en active Pending
- 2022-06-15 WO PCT/KR2022/008475 patent/WO2022265390A1/en not_active Ceased
- 2022-06-15 CN CN202280041585.4A patent/CN117480795A/en active Pending
- 2022-06-15 EP EP22825313.4A patent/EP4335130A4/en active Pending
- 2022-06-15 KR KR1020247001293A patent/KR20240021281A/en active Pending
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US10305540B2 (en) * | 2010-03-22 | 2019-05-28 | Decawave Limited | Measuring angle of incidence in an ultrawideband communication system |
| WO2013179195A1 (en) * | 2012-05-30 | 2013-12-05 | Nokia Corporation | Method, apparatus, and computer program product for high accuracy location determination |
| US10142778B2 (en) * | 2016-01-07 | 2018-11-27 | Qualcomm Technologies International, Ltd. | Direction finding for legacy bluetooth devices |
| WO2017198037A1 (en) * | 2016-05-17 | 2017-11-23 | 安徽酷哇机器人有限公司 | Uwb positioning system based on aoa |
| US20190317177A1 (en) | 2018-04-17 | 2019-10-17 | Apple Inc. | Electronic Devices with Motion Sensing and Angle of Arrival Detection Circuitry |
| US20200100283A1 (en) | 2018-09-25 | 2020-03-26 | Apple Inc. | Medium access control and channel access for access operations |
| CN112822325A (en) | 2021-01-25 | 2021-05-18 | Oppo广东移动通信有限公司 | Positioning display control method and related device |
Non-Patent Citations (2)
| Title |
|---|
| See also references of EP4335130A4 |
| YONG UP LEE, YEOUNGJUN SEO, GINKYU CHOI: "Angle-of-Arrival Estimation for UWB Signals Clustered in Angle", 2006 1ST INTERNATIONAL SYMPOSIUM ON WIRELESS PERVASIVE COMPUTING, 1 January 2006 (2006-01-01), pages 1 - 4, XP055126849, ISBN: 97807803941010, DOI: 10.1109/ISWPC.2006.1613581 * |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2024149382A1 (en) * | 2023-01-13 | 2024-07-18 | 华为技术有限公司 | Information transmission method and apparatus |
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| US20220404448A1 (en) | 2022-12-22 |
| CN117480795A (en) | 2024-01-30 |
| EP4335130A1 (en) | 2024-03-13 |
| KR20240021281A (en) | 2024-02-16 |
| EP4335130A4 (en) | 2024-10-23 |
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