WO2020111596A1 - Procédé et serveur de gestion d'installation de production d'énergie virtuelle permettant de fournir une récompense par réflexion d'éléments de jeu, et système utilisant ces derniers - Google Patents

Procédé et serveur de gestion d'installation de production d'énergie virtuelle permettant de fournir une récompense par réflexion d'éléments de jeu, et système utilisant ces derniers Download PDF

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Publication number
WO2020111596A1
WO2020111596A1 PCT/KR2019/015493 KR2019015493W WO2020111596A1 WO 2020111596 A1 WO2020111596 A1 WO 2020111596A1 KR 2019015493 W KR2019015493 W KR 2019015493W WO 2020111596 A1 WO2020111596 A1 WO 2020111596A1
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WIPO (PCT)
Prior art keywords
power
vehicle
user terminal
request
providing
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Ceased
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PCT/KR2019/015493
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English (en)
Korean (ko)
Inventor
이휘성
박시현
백경석
오재철
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I on Communications Co Ltd
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I on Communications Co Ltd
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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/06Energy or water supply
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/02Marketing; Price estimation or determination; Fundraising
    • G06Q30/0207Discounts or incentives, e.g. coupons or rebates
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/40Business processes related to the transportation industry

Definitions

  • the present invention relates to a method for managing a virtual power plant that provides compensation by reflecting game elements, a server, and a system using the same, in particular, to a user who has built a virtual power plant and supplied power by using power stored in a transportation means such as an electric vehicle. It relates to a virtual power plant management method that provides compensation by reflecting game elements, a server, and a system using the same.
  • the smart grid optimizes energy efficiency by exchanging real-time information in both directions by power providers and consumers by integrating information technology into the existing one-way power grid that was in the stage of'generation, transmission, distribution, and sales'.
  • Intelligent power grid.' The basic concept is to efficiently operate the entire power system through information that connects power plants, transmission and distribution facilities, and power consumers to the information and communication networks and shares them in both directions.
  • the electricity supplier can grasp the electricity usage status in real time to flexibly adjust the supply amount, and the electricity consumer can grasp the electricity usage status in real time to avoid the expensive time period and adjust the usage time and usage accordingly. It is also possible to sell electricity produced at home, such as solar power, fuel cells, and electric energy of electric vehicles.
  • the smart grid an intelligent power grid, is operated by an automatic adjustment system to minimize failures by detecting failure factors in advance, and unlike conventional power systems, it is converted into a distributed power system that directly connects various power providers and consumers, and Utilization of new and renewable energy, which has irregular limitations in power production, is increased depending on the amount of sunlight.
  • a virtual power plant means a system that manages small-scale distributed power sources, such as small-scale renewable energy generation facilities, energy storage systems (ESS), and electric vehicle batteries, as a single power plant using cloud-based software.
  • V2G Vehicle to Grid
  • V2G Vehicle to Grid
  • the present invention is to solve the above problems, a virtual power plant management method for providing compensation by reflecting game elements according to an embodiment of the present invention, a server and a system using the same provide users with game elements to provide users with game elements
  • the goal is to effectively manage virtual power plants by encouraging them to supply electricity voluntarily.
  • the virtual power plant management method for providing rewards by reflecting game elements may generate interest by providing various visual elements to a user according to the degree of contribution of power. .
  • the virtual power plant management method for providing compensation includes the power reserves included in at least one transportation means, the power charging history of the at least one transportation means, and the operation history And a vehicle information collection step of collecting at least one of location information, a request amount of power required to supply power, a request location indicating a location to supply power, a request time indicating a time to supply power, and a power supply result according to the request.
  • the compensation is additionally compensated to at least one user terminal that forms the group.
  • the reward providing unit may determine the ranking of the user terminal based on the reward transmitted to the user terminal.
  • the incentive information may be any one of an icon interface displayed on the user terminal, a rate discount of a predetermined device from the user terminal, and a point voucher charging energy of the at least one vehicle.
  • the power request event in the generating of the power request event, may be transmitted to a vehicle located within a preset range by comparing the location information of the at least one vehicle with the request location.
  • the virtual power plant management method for providing the compensation is verified to determine whether the at least one transport means can supply power according to the acceptance message based on the power reserve included in the at least one transport means It may further include a step.
  • the verification step when determining the minimum required amount of power required for the operation of at least one means of transportation based on the power reserves, power charging history and operation history, when supplying power from the at least one vehicle
  • a stop signal for stopping power supply may be generated.
  • the virtual power plant management server that provides compensation according to an embodiment of the present invention, the power reserves stored by at least one vehicle, the power charging history of the at least one vehicle, operation Vehicle information collection unit for collecting at least one of the breakdown and location information, the amount of power required to supply power, the location of the request to indicate the location where power is required, the request time to indicate the time to supply power, and the power supply result according to the request Power request event generating unit for generating a power request event including at least one of the incentive information to be compensated according to, from the at least one user terminal connected to the at least one transportation means wired or wireless to the power supply request according to the power request event It characterized in that it comprises an event reply unit for receiving a response to the acknowledgment message, and a reward providing unit for providing compensation according to the incentive information to a user terminal supplying power according to the power request event.
  • a virtual power plant management system that provides compensation according to an embodiment of the present invention is connected to at least one transportation means and the at least one transportation means, and is bidirectional with the at least one transportation means.
  • a power charging station for charging and discharging electric power, and receiving at least one of the power storage amount, power charging history, operation history and location information of the at least one vehicle, connected to the power charging station, and the power storage amount of the at least one vehicle ,
  • a virtual power plant management server that collects at least one of power charging history, driving history and location information, and generates a power request event requesting power supply, and transmits a consent message according to the power request event, and the power request event It includes a user terminal that is supplied with power to receive compensation from the virtual power generation management server, the power request event, the amount of requested power that needs to be powered, the location of the request to indicate where the power is needed, the time when the power is required Characterized in that at least one of the incentive information to be compensated according to the request time and the power supply result according to the
  • the virtual power plant management method for providing rewards by reflecting game elements according to an embodiment of the present invention as described above, a server and a system using the same provide game elements such as events to users so that users can voluntarily supply power It has the advantage of being able to induce, and inducing the competition of users, so that power can be supplied more effectively.
  • a virtual power plant management method for providing compensation by reflecting game elements according to an embodiment of the present invention, a server, and a system using the same provide rewards to users according to the degree of contribution of power, and provide power to a user terminal.
  • a virtual power plant management method for providing compensation by reflecting game elements according to an embodiment of the present invention, a server, and a system using the same provide rewards to users according to the degree of contribution of power, and provide power to a user terminal.
  • FIG. 1 is a schematic diagram of a virtual power plant management system that provides compensation according to an embodiment of the present invention.
  • FIG. 2 is a block diagram of a virtual power plant management server that provides compensation according to an embodiment of the present invention.
  • FIG. 3 is a view showing an interface configuration displayed on a user terminal according to an embodiment of the present invention.
  • FIG. 4 is a flow chart of a virtual power plant management method for providing compensation according to an embodiment of the present invention.
  • FIG. 1 is a schematic diagram of a virtual power plant management system that provides compensation according to an embodiment of the present invention
  • FIG. 2 is a block diagram of a virtual power plant management server that provides compensation according to an embodiment of the present invention.
  • a virtual power plant management system 1000 that provides compensation according to an embodiment of the present invention includes at least one transportation means 100, a power charging station 200, and a virtual power plant management server 400. can do.
  • the at least one transport means 100 may be a transport means driven by using the power of a built-in battery such as an electric vehicle, an electric motorcycle, an electric bicycle or a drone, but is not limited thereto, and at least one transport means in this embodiment 100 may be an electric vehicle with a built-in battery.
  • a built-in battery such as an electric vehicle, an electric motorcycle, an electric bicycle or a drone, but is not limited thereto, and at least one transport means in this embodiment 100 may be an electric vehicle with a built-in battery.
  • the power charging station 200 may receive power by supplying power to at least one vehicle 100 or discharging a battery of at least one vehicle 100. That is, the power charging station 200 may be provided with a device (bi-directional on board charger) capable of charging and discharging in both directions with at least one vehicle 100.
  • the power charging station 200 may be a charging station that stores electric power.
  • a plurality of power charging stations 200 may be formed inside and outside the city center, and at least one vehicle 100 may charge power required at any power charging station 200 among the plurality of power charging stations 200.
  • the power charging station 200 receives power reserves, power charging history, operation history and location information of at least one transportation vehicle 100 from at least one transportation vehicle 100 using wireless communication such as Bluetooth or Wi-Fi. can do.
  • the electric power charging station 200 charges electric power by using different ports of one cable when charging electric power to at least one vehicle 100 or discharging electric power of at least one vehicle 100 The information can be transmitted and received at the same time as the discharge.
  • the power charging station 200 may transmit and receive the information to and from at least one transportation means 100 using a separate cable for transmitting and receiving information in addition to a cable for supplying power.
  • the amount of power retained may be the amount of power of a battery that stores power of at least one vehicle 100.
  • the power charging history may include the location of the power charging station 200 in which at least one vehicle 100 has charged power in the past, the amount of charging power, and the charging time.
  • the operation history may include complex operation information, such as a path that the at least one vehicle 100 has moved, a speed at which it has been moved, and a weight of the at least one vehicle 100.
  • the operation history may be recorded using a diagnostic system such as an OBD scanner, but is not limited thereto, and the operation history may be recorded and stored by various methods.
  • the location information may be information of a place where at least one vehicle 100 is located.
  • the at least one vehicle 100 connected to the power charging station 200 is adjacent to the power charging station 200, and the location of the at least one vehicle 100 is determined.
  • the at least one vehicle 100 may be provided with a location information collecting device such as GPS, and communicate with the virtual power plant management server 400 described below to provide location information.
  • the at least one vehicle 100 is connected to the user terminal 300, which will be described later, through short-range communication, and determines that the location of the at least one vehicle 100 is adjacent to the user terminal 300, so that the user terminal The location of at least one vehicle 100 may be estimated using the location of 300.
  • the power charging station 200 can identify which transportation vehicle the connected vehicle 100 is, and at least one transportation
  • the means 100 may identify which power charging station 200 the connected power charging station 200 is.
  • power charging stations 200_1 to 200_3 may be connected to at least one vehicle 100_1 to 100_7, respectively.
  • the power charging station 200_1 can identify that it is connected to two transportation means 100_1 and 100_2, and the power charging station 200_2 can identify that it is connected to three transportation means 100_3 to 100_5, and the power charging station (200_3) may be identified as being connected to the two means of transportation (100_6 to 100_7), and may identify which vehicle (100) is connected to each.
  • the user terminal 300 is respectively connected to at least one vehicle 100 and can display information of the vehicle 100.
  • the user terminal 300 may be connected to at least one transportation means 100 through short-range communication, a wired cable, etc., but is not limited thereto.
  • the user terminal 300 may be a portable electronic device such as a smartphone or tablet PC with a display.
  • the user terminal 300 may display information of the transportation means 100 through an application and transmit and receive information to the virtual power plant management server 400 described later.
  • the user terminals 300_1 to 300_7 may exchange data with respective corresponding transportation means 100_1 to 100_7 as shown in FIG. 1.
  • the virtual power plant management server 400 includes a vehicle information collection unit 410, a power request event generation unit 420, an event reply unit 430, a verification unit 440, and a compensation providing unit 450. ), a server communication unit 460 and a control unit 470.
  • the virtual power plant management server 400 is a device that can communicate with the power charging station 200 and the user terminal 300 and operates and manages power virtually, connected to the power charging station 200 and information with the power charging station 200 It is possible to control the operation of the power charging station 200 by transmitting and receiving a control signal input from the outside.
  • the virtual power plant management server 400 may be directly connected to the power charging stations 200_1 and 200_3 in FIG. 1, but the power charging station 200_2 is connected to the aggregator 500 as an intermediate medium according to another embodiment as described below. It may be connected with. The details of the virtual power plant management server 400 connected to the aggregator 500 will be described later.
  • the vehicle information collection unit 410 may collect the power reserves stored by the at least one vehicle 100, the electric power charging history, the operation history and the location information of the at least one vehicle 100.
  • the vehicle information collecting unit 410 stores the power reserve of the at least one vehicle 100 from the power charging station 200, Electric power charging history, operation history and location information can be collected.
  • the vehicle information collecting unit 410 may receive information about at least one vehicle 100 from the user terminal 300 corresponding to the at least one vehicle 100.
  • the power request event generator 420 may generate a power request event requesting power supply.
  • the power request event may include a requested power amount, a request place, a request time, and incentive information.
  • the requested power amount indicates the amount of power required to supply power
  • the request location indicates the location where power is required
  • the requested time indicates the time required to supply power
  • the incentive information is information about compensation provided according to the power supply result according to the request (Eg, items on an application).
  • the power request event may be, for example, a message of “Gangnam-gu area, request for 100KW power before 6 pm”.
  • the power request event generator 420 may transmit a power request event to all user terminals 300.
  • the power request event generation unit 420 may compare the location information of at least one transport means 100 with the request location and transmit the power request event to the transport means 100 located within a preset range. Therefore, the virtual power plant management system 1000 that provides compensation according to an embodiment of the present invention can be quickly supplied with power from the vehicle 100 located near the request location.
  • the power request event generator 420 may generate a power request event when power supply request information is input from the outside, or may automatically generate a power request event by analyzing a location and time zone in which power supply is required.
  • the power request event may be a goal that can be achieved by one user terminal 300 in an application or a goal that can be achieved by forming multiple groups of user terminals 300.
  • a power request event may additionally provide a compensation to the user terminal 300 forming the group as described below.
  • the power request event is a kind of game element, and may be displayed in the name of a game, mission, etc. on the application of the user terminal 300. Accordingly, the virtual power plant management system 1000 that provides compensation according to an embodiment of the present invention has an effect of inducing users to voluntarily supply power by providing a game element to the user.
  • power may be requested from an external server according to an embodiment to generate a power request event.
  • the external server pays a predetermined price to the virtual power plant management server 400 and then powers the virtual power plant management server 400. You can ask.
  • the event reply unit 430 may receive an acknowledgment message responsive to the power supply request according to the power request event from at least one user terminal 300 connected to the at least one vehicle 100 by wire or wireless.
  • the event reply unit 430 may receive and store information about when and which vehicle 100 will supply power to the power charging station 200 at a certain location through an acceptance message received from the user terminal 300.
  • the verification unit 440 may determine whether the at least one vehicle 100 can supply power according to the acceptance message based on the amount of power stored in the at least one vehicle 100. Accordingly, the virtual power plant management system 1000 that provides compensation according to an embodiment of the present invention can determine and predict in advance whether a target of a power request event can be achieved. Accordingly, the virtual power plant management system 1000 that provides compensation according to an embodiment of the present invention determines in advance whether additional power should be supplied from another transportation means 100, and a success rate to achieve the goal of the power request event Can increase.
  • the verification unit 440 determines the minimum required amount of power required for the operation of the at least one transport means 100 based on the power reserve, power charge history and operation history, and power from the at least one transport means 100 When supplying the power can generate a stop signal to stop the power supply when the amount of power is reduced to the minimum required amount of power.
  • the verification unit 440 may calculate the amount of power that needs to be consumed every day by using the power charging history and the operation history of the at least one vehicle 100.
  • the verification unit 440 may calculate the amount of power consumed by at least one vehicle 100 for each time zone, and may calculate the amount of power remaining for each hour to determine the minimum amount of power required.
  • the verification unit 440 may stop supplying power when the amount of power storage decreases below a minimum required power amount while the at least one vehicle 100 continues to supply power to the power charging station 200.
  • the virtual power plant management system 1000 that provides compensation can prevent the minimum power required for the vehicle 100 from being insufficient. Therefore, the virtual power plant management system 1000 that provides compensation prevents the remaining power from running out of operation due to insufficient power because the power supply is automatically stopped even if the user accidentally tries to supply excessive power. Can be.
  • the verification unit 440 may recharge the electric power from the electric power charging station 200.
  • the amount of power that can be recharged during a spare time for recharging the power can be calculated by adding the amount of power to the power. Accordingly, the virtual power plant management system 1000 that provides compensation has an advantage of inducing abundant power supply from the transportation means 100 by supplying additional power as much as the amount of rechargeable power.
  • the compensation provider 450 may provide compensation according to incentive information to the user terminal 300 that supplies power according to the power request event.
  • the incentive information may be any one of an icon interface displayed on the user terminal 300, a rate discount of a predetermined device from the user terminal 300, and a point voucher for charging energy of at least one vehicle 100.
  • the icon interface displayed on the user terminal 300 may be an item for a vehicle exterior icon or background picture displayed in the application described in FIG. 3. Further, the incentive information may be an item whose level or ranking displayed on the application of the user terminal is adjusted upward.
  • the incentive information may be transferred to each other through the'gift' function between the user terminals 300.
  • the virtual power plant management server 400 through the power request event generating unit 420, "request time” is 12 to 13:00, “request place” is Gimpo Airport, and the requested power amount is "KW" "To the user terminal 300.
  • the user terminal 300 may transmit an acceptance message according to the “power request event” to the virtual power plant management server 400.
  • the virtual power plant management server 400 displays the user terminal 300 in response to the acceptance message. Accordingly, it is determined that the implementation has been faithfully performed, and the above-described incentive information can be transmitted to the user terminal 300.
  • the virtual power plant management server 400 may transmit penalty information. For example, if the transportation means 100 connected to the user terminal 300 does not satisfy any one of the request time, the request place, and the requested power according to the acceptance message, the virtual power plant management server 400 is the user terminal 300 ) Is determined to have not been faithfully implemented according to the acceptance message, and the penalty information displayed on the application of the user terminal 300 is dropped, the wheeled image is displayed, or the image where the vehicle is damaged is transmitted. Can be.
  • the vehicle 100 connected to the user terminal 300 is periodically parked in the building by regular operations such as commuting and supplies power to the building for a period of time, such as when a power is supplied into the building.
  • the virtual power plant management server 400 may provide a coin or coupon that can be used in a store located in a predetermined building to the user terminal 300.
  • the virtual power plant management server 400 provides a coin or coupon that can be used in the company building as a user terminal of the office worker.
  • Coins or coupons may be coupons that can be exchanged for drinks such as virtual coins or coffee having value as goods.
  • the virtual power plant management system 1000 can effectively induce power supply by inducing interest and competition to users.
  • the rate discount of a device designated in advance from the user terminal 300 may be information connected to an external gas rate, electricity rate, and tax payment server, and discount rates charged by the various external servers.
  • the compensation provider may request the external gas rate server to discount the rate for the gas device specified by the user terminal 300. have.
  • the point voucher for charging the energy of the at least one vehicle 100 may be a discount coupon that can be used to pay for the power charged at the power charging station 200. At least one vehicle 100 may charge a power amount corresponding to the price of the point voucher using the point voucher when charging the power at the power charging station 200.
  • the compensation provider 450 additionally compensates the at least one user terminal 300 that forms the group.
  • the virtual power plant management system 1000 that provides compensation according to an embodiment of the present invention includes a plurality of user terminals 300 together to form a group in advance in an application to achieve a target according to a power request event. You can agree to form a group.
  • At this time, at least one user terminal 300 may invite an invitation to participate in a group to perform a power request event together with another user terminal 300, and the other user terminal 300 accepts the invitation to request a power request event. You can join the group to perform together.
  • the reward providing unit 450 accepts the invitation, and a group is formed. If the group achieves the target according to the power request event, the user terminal 300 and the invited user terminal 300 invited to the group Additional rewards may be provided. Therefore, the virtual power plant management system 1000 according to an embodiment of the present invention has a scarce value to a user who induces another user to participate in the system so that a user who fails to induce another user to participate in the system is psychologically shaken. By providing a reward, it is possible to induce competition among users more effectively.
  • At least one user terminal 300 may be formed by coincidence without agreeing to form a group in advance. That is, the at least one user terminal 300 may form the user terminals 300 that have accidentally achieved the same power request event together.
  • the reward providing unit 450 may additionally provide a reward similar to that in which a group is formed in advance for at least one user terminal 300 that is accidentally formed as a group. For example, in the power request event, when a total of 1000KW of power was requested to Gangnam-gu at 10, when 50 user terminals 300 reported the power request event and supplied 20KW each to Gangnam-gu, 50 of them contributed to the total of 1000KW of power supply.
  • the user terminal 300 may be treated as forming a group.
  • the reward providing unit 450 may additionally provide a reward to the user terminal 300 forming the group according to the content included in the incentive information.
  • the reward providing unit 450 may determine the ranking of the user terminal 300 based on the reward transmitted to the user terminal 300. In addition, the reward providing unit 450 may additionally provide a reward to the user terminal 300 of a predetermined rank according to the determined rank. Therefore, the virtual power plant management system 1000 that provides compensation according to an embodiment of the present invention has the advantage of inducing users' competition and inducing interest to users and effectively receiving power.
  • the server communication unit 460 may transmit and receive information to and from the user terminal 300 and the power charging station 200.
  • the server communication unit 460 transmits a power request event to the user terminal 300 and receives location information of the user terminal 300 and information of the transportation means 100 connected to the user terminal 300 from the user terminal 300. Can be.
  • the server communication unit 460 may receive information of the vehicle 100 connected to the power charging station 200 from the power charging station 200.
  • the control unit 470 may compare and analyze the acceptance message according to the power request event, determine whether power is supplied according to the acceptance message to the power charging station 200, and provide compensation to the user terminal 300 according to the power supply result have.
  • the virtual power plant management server 400 may be connected to the power charging station 200_2 by connecting the aggregator 500 of FIG. 1 as an intermediate medium.
  • the virtual power plant management server 400 is directly connected to all power charging stations 200 or connected to all power charging stations 200 and aggregators 500 as an intermediate medium, or by mixing the two methods. Since it can be connected to the power charging station 200, for convenience of description, FIG. 1 shows a mixture thereof. That is, the power request event generator 420 of the virtual power plant management server 400 transmits a power request event directly to at least one vehicle 100 to collect power, or a power request event to the aggregator 500 After transmitting the aggregator 500 may collect power by recruiting members of each transportation means. The aggregator 500 may collect information regarding the rated capacity of electric power stored in at least one vehicle 100_3 to 100_5. The aggregator 500 may exchange data with the virtual power plant management server 400 through the aggregator terminal.
  • the virtual power plant management server 400 may transmit the incentive information to the aggregator 500 when collecting power according to the requested amount of power after receiving the acceptance message from the aggregator 500.
  • the virtual power plant management server 400 may request a certain amount of power when collecting a power request event to the aggregator 500, or may request to collect power for a certain time.
  • the aggregator 500 may be connected to various types of distributed power resources that use electric power in addition to at least one transportation means 100_3 to 100_5 to manage or collect power. Since the virtual power plant management system 1000 is connected to various distributed power resources through the aggregator 500 to collect power, the virtual power plant management system according to an embodiment of the present invention When applied to (1000), it is necessary to connect the aggregator 500 to collect power, so there is an advantage of being compatible with the system regardless of the type of distributed power resource. That is, when using the aggregator 500, the virtual power plant management system 1000 has an effect of forming a new type of power market composed of new types of distributed power resources.
  • FIG. 3 is a view showing an interface configuration displayed on a user terminal according to an embodiment of the present invention.
  • the user terminal 300 may display an application implementing a virtual power plant management system 1000 that provides compensation according to an embodiment of the present invention through a display.
  • an application that implements a virtual power plant management system 1000 that provides compensation may display an exterior (c1) of a vehicle icon, and a background picture may be displayed as a background of the vehicle, The current charging time and the status s1 related to the incentive information may be displayed, and the ranking g1 due to competition of the user terminal 300 may be displayed.
  • the user terminal 300 may display the appearance c2 of the vehicle icon through the display.
  • the exterior (c2) of the vehicle icon shown in (b) of FIG. 3 may be set to a different type of vehicle, unlike FIG. 3 (a).
  • the appearance of the vehicle icon may be an interface provided as another compensation for power supply.
  • the vehicle icon may be a means for expressing the contribution of each user terminal 300 according to the type and design of the vehicle.
  • a background picture may be displayed as a background of a vehicle, and a state s2 related to a current charging time and incentive information may be displayed, and the user terminal 300
  • the ranking (g2) due to the competition can be displayed.
  • the virtual power plant management system 1000 that provides compensation according to an embodiment of the present invention provides various visual elements to the user according to the contribution degree of power, thereby providing pleasure as if playing games while supplying power. Can be.
  • FIG. 4 is a flowchart of a virtual power plant management method 2000 for providing compensation according to an embodiment of the present invention.
  • the virtual power plant management method for providing compensation according to an embodiment of the present invention is a vehicle information collection step (S210), a power request event generation step (S230), an event reply step (S250) And it may include a reward providing step (S270).
  • the virtual power plant management method 2000 for providing compensation according to an embodiment of the present invention may be performed by the virtual power plant management server 400 of FIG. 2 described above.
  • the vehicle information collection step (S210) may collect the power reserves included in the at least one vehicle 100, the electric power charging history, the operation history and the location information of the at least one vehicle 100.
  • the vehicle information collecting step (S210) may be performed by the vehicle information collecting unit 410 of the virtual power plant management server 400.
  • the power request event generation step (S230) includes incentive information to compensate according to the amount of requested power required to supply power, a request location indicating a location where power is required, a request time indicating a time required to supply power, and a power supply result according to the request. Power request event.
  • the incentive information may be any one of an icon interface displayed on the user terminal 300, a rate discount of a predetermined device from the user terminal 300, and a voucher for charging energy of at least one vehicle 100.
  • the power request event generation step (S230) may compare the location information of at least one transport means 100 with the request location and transmit a power request event to the transport means 100 located within a preset range.
  • the power request event generation step S230 may be performed by the power request event generation unit 420 of the virtual power plant management server 400.
  • the event reply step S250 may transmit a power request event to at least one user terminal 300 connected to the at least one vehicle 100 and wired or wirelessly, and receive an acceptance message according to the power request event.
  • the event reply step S250 may be performed by the event reply unit 430 of the virtual power plant management server 400.
  • the compensation providing step (S270) may provide compensation according to incentive information to the user terminal 300 that supplies power according to the power request event.
  • the step of providing compensation (S270 ) when at least one user terminal 300 forms a group that performs a power request event together to supply power, it is added to at least one user terminal 300 that forms the group. Can provide compensation.
  • the reward providing step S270 may determine the ranking of the user terminal 300 based on the reward transmitted to the user terminal 300.
  • the reward providing step S270 may be performed by the reward providing unit 450 of the virtual power plant management server 400.
  • the virtual power plant management method 2000 may further include a verification step (not shown).
  • the verification step may determine whether the at least one transport means 100 can supply power according to the acceptance message based on the amount of power held in the at least one transport means 100.
  • the verification step determines the minimum required amount of power required for the operation of the at least one vehicle 100 based on the amount of power reserve, the electric power charging history and the operation history, and when the electric power is supplied from the at least one vehicle 100 When reduced to this minimum required amount of power, a stop signal can be generated to stop the power supply.
  • the verification step (not shown) may be performed by the verification unit 440 of the virtual power plant management server 400.

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Abstract

La présente invention concerne un procédé et un serveur de gestion d'installation de production d'énergie virtuelle destinés à fournir une récompense par la réflexion d'éléments de jeu et un système utilisant ces derniers, le procédé de gestion d'installation de production d'énergie virtuelle destiné à fournir une récompense, selon un mode de réalisation de la présente invention, comprenant : une étape de collecte d'informations de moyens de transport destinée à collecter au moins un élément parmi la quantité de retenue de puissance d'au moins un moyen de transport et des informations d'historique de charge d'énergie, d'historique de fonctionnement et d'emplacement du ou des moyens de transport ; une étape de génération d'événement de demande d'énergie destinée à générer un événement de demande d'énergie comprenant au moins un élément parmi une quantité de puissance demandée pour une alimentation électrique requise, un emplacement demandé indiquant un emplacement au niveau duquel l'alimentation électrique est nécessaire, un moment requis indiquant un moment auquel l'alimentation électrique est nécessaire et des informations d'incitation destinées à fournir une récompense selon le résultat d'alimentation électrique en fonction de la demande ; une étape de réponse d'événement destinée à transmettre l'événement de demande de puissance à au moins un terminal utilisateur connecté de manière filaire/sans fil au(x) moyens de transport et à recevoir un message de consentement correspondant à l'événement de demande d'énergie ; et une étape de fourniture de récompense destinée à fournir une récompense selon les informations d'incitation à un terminal utilisateur qui fournit une énergie en fonction de l'événement de demande d'énergie.
PCT/KR2019/015493 2018-11-29 2019-11-14 Procédé et serveur de gestion d'installation de production d'énergie virtuelle permettant de fournir une récompense par réflexion d'éléments de jeu, et système utilisant ces derniers Ceased WO2020111596A1 (fr)

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