TW200423762A - Method and apparatus for controlling data rate of a reverse link in a communication system - Google Patents
Method and apparatus for controlling data rate of a reverse link in a communication system Download PDFInfo
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- TW200423762A TW200423762A TW093103849A TW93103849A TW200423762A TW 200423762 A TW200423762 A TW 200423762A TW 093103849 A TW093103849 A TW 093103849A TW 93103849 A TW93103849 A TW 93103849A TW 200423762 A TW200423762 A TW 200423762A
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W48/00—Access restriction; Network selection; Access point selection
- H04W48/08—Access restriction or access information delivery, e.g. discovery data delivery
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/02—Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
- H04W8/04—Registration at HLR or HSS [Home Subscriber Server]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/14—Relay systems
- H04B7/15—Active relay systems
- H04B7/204—Multiple access
- H04B7/216—Code division or spread-spectrum multiple access [CDMA, SSMA]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/0001—Systems modifying transmission characteristics according to link quality, e.g. power backoff
- H04L1/0002—Systems modifying transmission characteristics according to link quality, e.g. power backoff by adapting the transmission rate
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
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- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/0001—Systems modifying transmission characteristics according to link quality, e.g. power backoff
- H04L1/0015—Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the adaptation strategy
- H04L1/0017—Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the adaptation strategy where the mode-switching is based on Quality of Service requirement
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- H04L47/00—Traffic control in data switching networks
- H04L47/10—Flow control; Congestion control
- H04L47/30—Flow control; Congestion control in combination with information about buffer occupancy at either end or at transit nodes
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- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L47/00—Traffic control in data switching networks
- H04L47/50—Queue scheduling
- H04L47/62—Queue scheduling characterised by scheduling criteria
- H04L47/6215—Individual queue per QOS, rate or priority
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
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- H04W28/02—Traffic management, e.g. flow control or congestion control
- H04W28/0205—Traffic management, e.g. flow control or congestion control at the air interface
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- H04W28/16—Central resource management; Negotiation of resources or communication parameters, e.g. negotiating bandwidth or QoS [Quality of Service]
- H04W28/18—Negotiating wireless communication parameters
- H04W28/22—Negotiating communication rate
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W92/00—Interfaces specially adapted for wireless communication networks
- H04W92/04—Interfaces between hierarchically different network devices
- H04W92/10—Interfaces between hierarchically different network devices between terminal device and access point, i.e. wireless air interface
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- H—ELECTRICITY
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- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/004—Arrangements for detecting or preventing errors in the information received by using forward error control
- H04L1/0045—Arrangements at the receiver end
- H04L1/0047—Decoding adapted to other signal detection operation
- H04L1/005—Iterative decoding, including iteration between signal detection and decoding operation
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
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- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/12—Arrangements for detecting or preventing errors in the information received by using return channel
- H04L1/16—Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
- H04L1/18—Automatic repetition systems, e.g. Van Duuren systems
- H04L1/1867—Arrangements specially adapted for the transmitter end
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Description
200423762 玖、發明說明: 【發明所屬之技術領域】 本發明一般係關於通信領域,更特定言之,係關於控制 一通信系統内行動台之反向鏈路之資料速率。 35 ILS.C· §119中的優先權要求 本專利申請案要求2003年2月18曰申請之臨時申請案第 6〇/448,269號,標題為「反向鏈路資料通信」,以及2〇〇3年5 月9曰申请之臨時申請案第6〇/469,376號,標題為「供控制 一通信系統内一反向鏈路資料速率之方法及裝置」之優先 權,該等臨時申請案已讓渡給本發明的受讓人,並以引用 方式明確併入本文。 【先前技術】 在一無線通信系統中,—使用者不必要且過度的發送不 僅會降低系統容量,亦對其他使用者造成干擾。對一通信 系統中反向鏈路的資料速率的低效選擇會造心必要且過 度的發送。兩個終端使用者之間通信的資料經由若干協定 層傳遞,以確保經由該系統的正確資料流。通常,行動么 從應用程式接收心在-反向鏈路上發送之資料區塊 該貢料區塊分成數個絲,然後透過該通信軌發送。至 少在-個方面’藉由檢查資料各訊框中的錯誤,^且,若 在該資料訊框中偵測到無法接受錯誤或錯誤速率 重新發送該相同的資料訊框之系統可癌保資料的正;遞 达:该貝1區塊可為任何類型’例如,音樂資料、視訊資 料等。該等資料區塊可具有不 j每不同的遞送需
O:\91\91362.DOC -6 - 200423762 二次此種貝料遞廷需求經常與服務品質相關聯。可按照通 士貝料速_ β亥服務可接受的訊包損失速率、資料遞送在 、、才遲上的致性以及該資料通信可接受的最大延遲來 測量服務品質。若所選擇用於發送的資料速率不適當,則 、工系然法獲取所需的訊包損失與通信延遲參數。 在正向鏈路通化中,該基地台經常具有與數個行動台 ’的亡向鏈路σσ貝相關的充分資訊。如此,該基地台能夠 集中管理該正向鏈路通信資料速率。然而,在該反向鏈路 I ’行動台沒有關於其他行動台的發射之資訊。因此,該 仃動口可I出-凊求’以獲取以_資料速率發送之許可。 该基地台在檢視每個行動台的請求之後,接受歧絕所請 求的貝料速率。右拒絕所請求的資料速率,則該行動台將 請求-較低的資料速率,直至該基地台接受所請求的資料 速率允并5亥行動台不經該請求與接受程序,而以低於_ 資料速率之速率發送。此種資料速率通常為非常低的資料 速率。㈣反向鏈路上發送之冑,該行動纟需要完成其針 對資料速率叫求之通^。在行動台與基地台之間的此種費 用通信會達到一不可接受的位準,並對理想的服務品質造 成衝擊。 因此,需要提供一種用以在一通信系統中選擇一反向鏈 路資料速率之系統、方法以及裝置。 【發明内容】 本文所列舉的一個或一個以上範例性具體實施例的背景 均為數位無線資料通信系統。雖然在此背景下使用本發明
O:\91\91362.DOC -7- 200423762 有許多優點,但是本發明的不同具體實施例也可併入不同 的環境或組態中。一般而言,本文中說明的各種系統均可 使用軟體控制型處理器、積體電路或離散邏輯構成。本申 請案中所提及的資料、指令、命令、資訊、信號、符號及 晶片有利於以電壓、電流、電磁波、磁場或磁粒子、光場 或光粒子、或其任何組合來表示。此外,各方塊圖中所示 的方塊可代表硬體或方法步驟。 更明確地說,本發明之各項具體實施例可併入根據分碼 多向近接(code division multiple access ; CDMA)技術運作 的無線通信系統,電信行業協會(Telecommunication Industry Association ;TIA)及其它標準組織所發佈的各種標 準中已揭示並說明了此項技術。此等標準包括TIA/EIA-95 標準、TIA/EIA-IS-2000標準、IMT-2000 標準、UMTS 與 WCDMA標準,所有該等標準均經引用併入本文。在 「TIA/EIA/IS-856 cdma2000高速率訊包資料空中介面規 格」中也詳細說明一資料通信系統,此文亦經引用併入本 文。若需獲得標準副本,請造訪全球資訊網以下位址: http://www.3gpp2.org,或致函 TIA,Standards and Technology Department,2500 Wilson Boulevard,Arlington,VA 22201,United States of America。一般視該標準為UMTS標準,其經引用併 入本文,可聯絡以下地址獲得該標準:3GPP Support Office, 650 Route des Lucioles-Sophia Antipolis,Valbonne-France。 【實施方式】 圖1說明能夠根據任何分碼多向近接(CDMA)通信系統標
O:\91\91362.DOC 200423762 準運作同時併入本發明之各項具體實施例之通信系統1⑽ 、叙方塊圖。通^系統1 00可用於語音、資料或二者的通 ^ 般而言,通信系統1 〇〇包括一基地台1 ο 1,其提供數 =仃動台(例如,行動台102至104)之間,行動台至 與公共交換電話舆資料網路105之間的通信鏈路。圖丨中的 一動σ稱為資料接取終端機k⑽,· a丁),且兮美 地口稱為貧料接取網路(access network ; AN),與本發明的 主要範疇舆各種優點並不背離。基地台101可包括數個組 ,,如一基地台控制器及一基地收發器系統。基於簡化考 量’未顯示此等組件。基地台⑻可與其他基地台(例如, 基地台160)進行通信。行動交換中心(未顯示)可控制通信系 統100的各種運作方面,並與網路1〇5與基地台1〇1及16〇之 間的回程199相關。 ”也口 101透過從该基地台1 〇 1發射的正向鏈路信號與其 涵盍區域中的各行動台進行通信。將以行動台102至104為 目標的正向鏈路信號相加,形成正向鏈路信號1〇6。該正向 鏈路可承載數個不同的正向鏈路通道。接收正向鍵路信號 106的各行動台1〇2至1〇4解碼該正向鏈路信號1〇6,以擷取 、^、使用者為目標的資訊。基地台160亦可透過從基地台 160發射的正向鏈路信號與其涵蓋區域内的該等行動台進 行通信。行動台102至104可透過對應的反向鏈路與基地台 10114160進仃通信。各反向鏈路由一反向鏈路信號(例如, 刀別用於行動台1〇2至1〇4之反向鏈路信號1〇7至1〇9)保 持。儘管該等反向鏈路信號1〇7至1〇9以一個基地台為目
O:\91\91362.DOC 200423762 標’但亦可由其他基地台接收。 基地台⑻及⑽可同時與—共同行動台進行通信。例 订動口 102可與基地台1〇1舆16〇緊密聯繫,以保持與基 地台1〇1舆160兩者進行通信。在該正向鍵路上,基地台^ 卷射正向鏈路信號1〇6,且基地台16〇發射正向鏈路信號 在反向鏈路上,行動台1〇2發射反向鏈路信號,可 由基地台1〇1與160兩者接收。要向行動台1〇2發送一資料訊 包’應選擇該等基地台101與160之一,用以向行動台102 發射該資料訊包。在該反向鏈路上,基地台1G1與160皆嘗 式解馬由該行動台1 〇2發送的流量資料。可使該等反向與正 向鏈路的資料速率與功率位準,與本發明各種方面概括之 基地台舆行動台之間的通道條件保持一致。 圖2說明根據本發明之各種方面運作之用以處理及解調 變所接收的CDMA信號之接收器200的方塊圖。接收器2〇〇 可用於解碼反向與正向鏈路信號上的資訊。可使用接收器 200解碼基礎通道、控制通道以及補充通道上的資訊。所接 收的(Rx)樣本可儲存在尺八乂 2〇4中。接收的樣本由射頻/中 頻(radio frequency/intermediate frequency ; RF/IF)系統 290 以及天線系統292產生。該RF/IF系統290與天線系統292可 包括一或多個組件,用以接收多個信號,並用以RF/IF處 理所接收的信號,以利用所接收的分集增益。經不同傳播 路徑傳播的多個所接收信號可形成一共同源。天線系統292 接收RF信號,及傳遞RF信號至RF/IF系統290〇RF/IF系統290 可為任何傳統的RF/IF接收器。所接收的RF信號經過濾、降 O:\91\91362.DOC -10 - 200423762 硕及數位化,形成基頻頻率的RX樣本。將該等樣本提供給 〔工為(multlplexer ; mux)252。將 252的輸出提供給搜 尋抑單TC206與指狀元件2〇8。將控制系統21〇耦合至此。組 合器212將解碼器214輕合至指狀元件208。控制系統21〇可 為藉由軟體控制的微處理器,且可位於相同的積體電路或 ^於絲的積體電路中。解碼器214的解碼功能可依據渴輪 解馬(turbo decoder)或任何其他合適的解碼演算法。可將 源發射的信號以若干代碼層編碼。該解碼器214將根據兩或 -個代碼貫打解碼功能。例如,可將發送的資料以兩個不 同的層編碼,一外層與一實體層。該實體層係依據該渴輪 代碼’且該外層係依據里德所羅門代碼。如此,該解碼器 214依據此等代碼解碼所接收的樣本。 在操作期間,將所接收的樣本提供給mux 252。Mux 252 將該等樣本提供給搜尋器單元與指狀元件。控制單 配置指狀元件,以根據搜尋器單元寫的搜尋結果 以不同的時間偏移對所接收的信號實行解調變與解展開。 ί解㈣的結果並傳遞至解碼器214。解碼器214解碼 該等資料/輸出該㈣碼資料。實行通道解展開的方式 為根據單一日守序假設,將所接收樣本乘ΡΝ序列與所指派 、數的後數共軛,並且以數位方式過濾產生的樣本, 通常使用積體及轉儲(dump)累積器電路(未顯示)。此種技術 在此項技術中已知。可在基地台⑻與⑽的接收器部分中 =接收器200,用以處理所接收的來自行動台的反向鍵路 a,且在任何行動台的接收器部分中❹,帛以處理所
O:\91\91362.DOC -11 - 200423762 接收的正向鏈路信號。 、,、解碼為2 1 4可累積組合的能量,用以偵測資料符號。各資 料訊包可承載一循環冗餘檢查(cyclic redundancy check;、 CRC)攔位。該解碼器214可與控制系統2ι〇與或其他控制系 統連接,用以檢查所接收資料訊包中的錯誤。若不傳遞該 CRC貧料,則將錯誤地接收所接收的資料訊包。該控制系 統210與或其他控制系統將向該發射器傳送一否定應答訊 息’用以重新發射該資料訊包。 圖3說明用以發射反向及正向鏈路信號之發射器3〇〇的方 塊圖。將欲發送的通道資料輸入至調變器3〇1進行調變。調 變可根據任何熟知調變技術,如QAM、psK*BpsK。在調 艾之則,可經由一或多個編碼層傳遞要發送的通道資料。 為凋、夂為301產生欲發送的通道資料。由調變器%〗接收欲 發送的通道資料。 由資料速率與功率位準選擇器303選擇該調變資料速 率。根據從目的地接收的回饋資訊進行資料速率的選擇。 該資料速率經常基於通道條件,以及其他相關因素,且基 於本發明的各種方面。通道條件將隨時變化。資料速率的 選擇也隨時變化。 次資料速率與功率位準選擇器303從而選擇調變器3〇1中的 貝料速率。調變H 301的輪出經信號展開操作傳遞,並在組 鬼2中放大,以由天線3 04發送。該資料速率與功率位準 =擇器303亦為所發射信號的放大位準選擇一功率位準。所 k擇的貝料速率及功率位準的組合允許在接收目的地正確
O:\91\91362.DOC -12- 200423762 解碼所發射的資料。在組塊307中‘亦產生前導信號。在組塊 3 〇7中’將前導信號放大至適當位準。該前導信號功率位準 與接收目的地的通道條件相一致。該前導信號將在組合器 308中與該通道信號組合。可在放大器3〇9中放大該組合的 信號,並由天線304發射。天線304之組態包括天線陣列以 及多個輸入多個輸出之任何數目的組合。 在CDMA 2000系統中,允許行動台(m〇bile stati〇n ; My 具有若干同時進行的通信服務。各通信服務會具有不同的 服務品質(quality of service ; QoS)需求。對於一服務選項 而言’以特定定義之QoS參數(如特定資料速率或資料速率 範圍、資料訊包或數個資料訊包通信所允許的訊包損失速 率與最大延遲)進行資料訊包的通信。在通信鏈路進行服務 協商階段,行動台(MS)與基地台(BS)對一組QoS參數達成一 致。可以定義該等Q〇S參數,用於所定義之通信服務的持續 時間。然後,可要求該BS滿足此種協商的Q〇S,例如資料 速率’訊包損失以及具有最高可能性之最大延遲。 根據本發明的各種方面,提供一種用以實施該反向鏈路 上的QoS之方法及裝置,其中與佇列長度與訊包延遲截止期 限相關的更新資訊在MS上提供,而在BS上提供用以配置所 協商的Q〇s之資源管理器。該MS向BS請求所需的速率,而 非報告其仔列長度(backlog)資訊。MS在向BS請求資料速率 之如’计异所需的資料速率與持續時間。資料速率的請求 可為請求一或多個正向鏈路上的流量通道功率與前導 (traffic channel p0wer to pilot ; T/P)之比率的形式。該組可
O:\91\91362.DOC -13- 200423762 用資料速率具有對應的Τ/P比率。·可提供Τ/P與資料速率之 間的對應表。MS控制的自主資料速率亦可基於來自B S的擁 塞回饋。BS負責MS的速率配置、擁塞管理以及反向鏈路的 穩定性。BS亦負責容許控制。下列訊息流與程序圖描述回 應一資料速率請求之資源配置。 容許或拒絕服務請求3參數:速率分佈、最大延遲。向MS提供審査參數。 所需堆疊或擁塞速率適闬於總可用資源。嚴格控制RoT。管捏擁塞、 反向鍵路穩定性 速率請求
速率配置 訊包發送藤。丟棄將錯過截止期限的訊包0 按照截止期賺列訊包。計算所需速率、擁塞速率。 丟棄非一致訊包 X ίί 丨m it [B容許控制 01資源管理器 is^ 0速率配置
0速率請求 MS S排程器 0 Q〇S管理器 0策略實施 □訊包抵達 BS管理的實際資源為流量通道與前導功率之比率 (T/P)。從資料速率至通道T/P的映射為,根據所允許的重新 發送的數目以及對混合ARQ的使用所選擇的運作點。BS可 按照延遲需求(所允許的重新發送)為各服務指派一不同的 映射。對於短交易且延遲需求非常低(例如,交互遊戲)之服 務而言,此種最佳化比較有用。對於大多數的服務而言, B S最好選擇最大化反向鏈路通量之映射。左手側的數字(1 至8)代表將發生的事件或程序的可能順序。 1. BS管理容許控制,且僅容許具有可接受且可實現的QoS 需求之通信服務(或流)。一旦容許一服務或通信資料訊 包流,MS即意識到所協商的QoS參數,例如可接受的資 O:\91\91362.DOC -14- 200423762 料速率、訊包損失速率以及與該流相關聯的最大延遲。 注意,由於通道變化與靈活性,此等Q〇s保證需蓋然而 論。 2· MS貫施在入口處捨棄非一致性資料訊包之(上游)策 略。因此,MS接受藉由實施此策略,假設滿足用於容 許流之所協商的Q〇s之所有訊包。在輸出佇列階段之 W,MS會捨棄所需Q〇s超過所協商Q〇s(例如由通信資料 速率所定義)之訊包。Ms亦可實施一外部迴路機制,以 根據運作條件調整審查參數。則將「驗證」MS事實上 與其所協商的速率相符。 3·將MS容許的_致訊包置於輸出仵列中。截止期限係根 據Λ匕抵達日可間與該服務(或流)的最大許可延遲相關聯 ' ° MS車乂佳地可排列輸出佇列,使該等訊包按 …截士』限的順序儲存,截止期限最早的在最前。MS 必須官理其發送排程,以確保該等訊包在其截止期限之 4·⑽根據與輪出件列中的該等訊包相關聯的截止期限決
疋:而:貧料速率。下述過程更為完整。因為要求MS 决二的貝料逮率應滿足所協商的Q〇S,故所請求的資料 速率並非僅為_「優先權」指示。若由於擁塞、過載控 :或:何其他原因,基地台不能配置所需的速率,則藉 擁St棄仵列中的哪些訊包,MS亦可計算-或多個 ^貝料逮率,以輔祕制定低於所
则根據所需速率以及該仔列中將丢棄的訊包的數X
O:\91\91362.DOC -15- 5. 定該擁塞速率。_如 t 、又曰,§ ’丢棄佇列中的一訊包時, 則降低所需用以發射剩
耵剌餘數目的訊包之資料速率。BS 將所1¾與擁塞速率鏟^卜或 手轉化為所茜與擁塞T/P,或者Ms可直 接计异所需與擁塞T/P。 歡、BS進仃針對所需與擁塞τ/ρ或增量或減量之通 k、。BS必須嘗試滿足受制於可用資源之—增量請求, 因為MS需要此等資源以滿足其q〇s準則。ms的若干連 績T/P增謂求指示其優先權的增大,若不滿足該等請 求將造成不滿足某Q〇S準則。 6. BS排程器根據反向鏈路資源(即熱雜訊的增量)與時間 來堆疊此等T/P請求。該BS亦將某些資源留予已知延遲 車乂低頻覓連績的流,例如,語音呼叫。該68將嘗試最 佳化此種堆疊,例如,藉由延遲某些T/P配置或在較短 持續時間内提供較高的τ/ρ配置。若BS延遲對該乂§的配 置,則該MS後續的請求將請求更高的τ/ρ以滿足用於易 受延遲影響之訊包的QoS,因為發射該資料訊包的延遲 越長,所需用以滿足相同QoS之發送資料速率則越高。 因此’該BS在排程方面具有有限的靈活性。若具有多餘 的可用頻寬,BS可選擇忽略降低τ/ρ之請求,或提供高 於所請求的T/P。 7· BS制定至MS的T/P配置。向MS的指示該配置為當前資 料速率配置之增量(或減量)。 8。基於T/P配置,MS排程欲發送之訊包。MS基於最早截止 期限在袁别面之排私法則處理訊包,但可進行修改。例 O:\91\91362.DOC -16- 如,在開始發送权/ 發送是否在立截止:訊包之前,MS決定該資料訊包的 截止期限的函數,:限之:。此決定為所配置的τ/ρ與 ^ 且用以說明將來增量配置之潛力。 棄 < 何可犯會錯過其發送截止期限的訊包。若訊 包在其截止期限到期之前未能成功發射,則認為並遺 失。該MS將追蹤與該流相關聯的訊包損失速率。
Mst此種木構中,該時間步驟2、3以及8之程序分別允許 官理與其流相_的QgS(速率、最大延遲以及訊包損失 保證)。時間步驟4與5之程序允賴㈣其對所有流的需要合 併為個T/P需求。時間步驟上之則容許控制程序確保則在 時間步驟6具有足夠的資源,以滿足所有MS的所有容許、 協商的QoS流的需求。該MS決定滿足該Q〇s之所需資料速 率。廳將用於多個(㈣商的Q0S)服務的㈣合併為一速 率需求。此外’-般而言,該⑽可直接以所需τ/ρ工作, 而非決定所需速率再轉化為所需τ/ρ。其更為普遍,因為其 很容易實施具有不同的從Τ/Ρ至速率之映射的不同服務之 訊包的發送。 假設在一時間to, MS佇列係由尺寸為\之訊包Pi組成,其 中{卜1,·_·,N},其按照截止期限山排列。各訊包Pi與一 賓料服務k(i)相關聯。對於資料服務k而言,將已知資料速 率至T/P的映射定義為:Rk(T/P)。然後,在配置的τ/ρ值為 T〇時,將定義並決定下列等式。若速率為,訊包Pi 的空中發送時間,Xi為: (1)
Xi = Si/Rk⑴(丁〇), O:\91\91362.DOC -17- 200423762 因為已經按照其截止期限的順序排列該等訊包,故訊包 1元成其發送係在 1 t〇 +2Sj/Rk(j)(T〇),其中在D,·..,服® 中求和。(2) 即,截止期限先於山之訊包&,...,心奸之前發射。 因此’該程序將決定該Ms輸出仔列中的任何訊包是否將錯 過其截止期限,即 :二 其中 ⑺ 右違MS決定以當前速率,其仔財的任何訊包將錯過其 截止期限’則其可能需要一較高速率以滿足其q〇s。注意: 此種貧料速率計算使用與該奶❹巾的每個訊包相關聯 的截止期限貝5fL。該則不能僅基於與卩。賴做出此 種資料速率之決定。 存在若干方式向BS提供所需的τ/ρ資訊。取決於請求通道 的設計以及從⑽㈣之請求資訊的發送頻率,計算MS所 需的持續時間並向該BS提供指示亦較為有用。上述等式2 亦允許該MS決定所需持續時間。基本上,以配置的^比 率T。’MS佇列中最後的訊包將在時間Zn完成其發送。因此, 基於當前訊包件列以及所配置的速率’該所需持續時間為 zn。可以非常小的計算負擔更新等式2。例如,若在隨後時 ’完成訊包Pl的發送’所配置的τ/ρ變a',將更 訊包完成瞬間寫為: ’'
Zl(y+fvRk(J)(Tl),其中在[2,···,η範園中求和。⑷ ,使用下列等式根據先前訊包完成時間計算此等完成時間 O:\91\91362.DOC -18- 200423762 ^(ti) ti z^to). to -Si/Rk(1)(T〇)+2sj l/Rk(j)(T〇)] (5) 其次,假定尺寸為Snew、服務k(新)且截止期限為之新 訊包Pnew於時間t2抵達。一般而言,新訊包的截止期限在訊 包k與k+Ι的(有序的)截止期限之間,即,若让< n,則^$ dnew< dk+1。然後,若μ k,則&⑹不變。若μ的值變 ,則
Zi(t2)=Zi(tl)+Snew/Rk(叫(Τι)若 i > k ⑼ 口此MS此夠計算並保持更新其所需的τ/ρ,所需持續 4間,及其佇列中訊包的發送排程。 一為^助BS制定擁塞週期期間的速率配置,ms亦可藉由決 二丢茱其仵列中的哪些訊包來計算擁塞速率。該⑽將使用 井多的準則來設定可丟棄訊包的優先權·· •來自允許丟棄訊包之服務的訊包, •來自其當前訊包損失速率小於所協商訊包損失速率之 服務的訊包, •若不配置所需的T/P,射能會錯過其延遲截止期 訊包。 根據丢棄優先權,MS可在其仍然滿足在各種擁塞位準的 可,受QoS時,決定哪些訊包可能會被吾棄。然後,該奶 將等式(1)至(3)應用於藉由從Ms仔列中移除此等訊包而形 成之虛擬仵列,以計算該擁塞τ/ρ值。注意,全文中,訊包 資料與資料區塊可互換。 若Τ/Ρ至料的映射固定,則使用資 用相同。以下顯示圖形化說明所需與擁塞資料二更=
O:\91\91362.DOC -19- 200423762 不意圖。亦圖形化顯示訊包尺寸與 4 ,、,, 、々限。各訊包的尺 寸(以位7G為單位)以放置在一時間訊 扁卢夕+ *片+ 軸上其截止期限所 在處之垂直條來顯示。垂直條的尺 J八表訊包尺寸。緣原 點轉動之任何斜率為正的線對應於_ ' 你、π 、、, 速率(以位元/秒為單 )。原點為當前時間或配置開始的時 张女# ❿間。所需速率為滿足 所有截止期限的最小斜率,即,可伟 千 了使圖中所有訊包在此線 之下的最小斜率。同樣’ MS計算擁塞速率時,假定可丢辛 該仔列中的第-訊包(擁塞位準D,且—擁塞速率與丢棄該 佇列中的最大MS訊包相關聯(擁塞位準2)。
例如,該MS可決定一擁塞
…以及基於丟棄^大訊包之擁塞 (位準2)速率
在日守間t〇,MS佇列係由尺寸為〜之訊包pi組成,{i=1,··· N} ’其以截止期限山排列。然後,可以所配置的速率R〇
O:\91\91362.DOC -20- 200423762 寫下列等式。以速率Rq,訊 WR0 乂工中备运時間\為: 因為已經按照其截止期限的料排列該等訊々⑺
Pi元成其發送係在 匕’故訊包 ™ς_。,其中在n,·..,”範圍中求和。 即,截止期限先於4之訊包P1, ,p () 因此,該程序將決定該MS輸出仔列中的任何訊^發射。 過其截止期限,即 匕疋否將錯
Z i>di,其中 1 < i < N 若㈣S決定其仵列中的任何訊 (9) 其可能需要-較高速率以滿足其Qos。此種資二止= 用舆㈣S件列中的每個訊包相關聯的截止 ^ 不能僅根據—读⑽類做出此速率之決定。貝讯。侧 存在若干方式向BS提供所需的速率資訊。取決於 逼的设計以及從⑽至恥之請求資訊的發送頻月心 ⑽處所需的持續時間並向細提供指示亦較為有用 (寺式2)亦允許該MS決定所需持續時間。基本上,以配置的 k丰R。,MS仔列中的最後訊包將在時間Μ完成其發送 =根據當前訊包件列以及所配置的速率,該所需持續時 間為ZN。可以非常小的計算負擔更新等式⑺。例如,若在 隨後時間t】’完成訊包?1的發送,所配置的速率變為r 更新的訊包完成瞬間寫為: ; ζ(⑹=tl+ZSj/Rl,其中在[2, .··,η範圍中求和。(ι〇) 使用以下等式根據先前訊包完成時間計算此等完成時間
O:\91\91362.DOC -21 - 200423762 2l(tl)^i-[(zi(t〇).t0)R〇.Sl]/Rl (11) 士然後,假定尺寸為Snew且截止期限為^之新訊包p 抵達。—般而言,新訊包的截止期限在訊包 。、(妙有序的)截止期限之間,即,若k<N,則dk“一‘ d後,若1 S k ’則Zi(t2)不變。若速率不變,則 心⑹'(tO + SneJK 其中 i > k (12) 因此,MS能夠計算並保持更新其所需的速率, 時間,及其符列中訊包的發送排程。 員 如上所示,藉由檢查MS緩衝器中所有訊包的延遲截止期 限,MS能夠決定所需速率或τ/ρ。或者,若ms僅檢查其緩 衝器中的第一訊包,即,延遲截止期限最短的訊包,並應 用上述T/P(速率)計算,結果等於回饋至Bs的延遲截止期 限。在此情形下,所計算的I7P(或速率)之值代表最短截止 期限以及等效的最高優先權。將在以下段落中顯示用於反 向鏈路通道之延遲截止期限的兩位元編碼(two_bit encoding)之範例,並使用該範例。 可透過訊息或使用連續低速率的速率控制通道將反向鏈 路請求傳送至B S。將考量並使用下列方案: •使用反向鏈路訊息向BS提供佇列長度或backlog資 Λ。為了 Q 〇 S支援’應將Q 〇 S棚位添加到此請求訊息中。 •連續的Τ/Ρ或速率請求通道,其中MS週期性地插入一 位元,指示對更高速率之請求。其不向BS提供任何Q〇s的 指示。 O:\91\91362.DOC -22- 200423762 BS官理的資源包括流 刚導功率比率(T/P)。一妒 而吕,的Τ/Ρ比率映射至較高的資料速率。 2 Ί7Ρ比率與對應的資料 /系、,先允諍 、手之間有一個以上的映射方案。一 般而言,MS始終選擇使反向 ’、 τ/ϋΛΑ , 6 埏峪通里取大化之資料速率至 Τ/Ρ的映射。對於具有短 勿/、非吊低的延遲需求的某些服 矛力⑼如1互遊戲)而言,需要以較少的重新發送以及較高 的ρ來運作。因此,若該Ms的仔列之頭部的資料訊包且 有非常短的截止期限(例如,短於40毫秒),則⑽將選擇適 用於低延遲服務之料速率至τ/ρ㈣。可使料率,且將 其映射至Τ/Ρ、或直接計算所訂料操作該方案。 為允許BS資源管理器在擁塞週期内設定配置的優先權, 除了所需Τ/Ρ之外,Ms亦可向BS指示一或多個擁塞τ/ρ之 值。BS嘗試公平地為所有Ms配置所需的τ/ρ。若所需資源 超過可用貧源,該BS將在一時間將一個Ms所需的τ/ρ(以BS 所決定之某種順序),變為與擁塞位準丨相關聯之較小τ/ρ, 直至所有行動台的總配置降至可用資源以内。若必要,該 BS可移動至與擁塞位準2相關聯之τ/ρ等。所需τ/ρ或資料速 率以及擁塞Τ/Ρ或速率的指示可透過短控制訊息、連續訊息 或其組合進行通信。
在至BS的請求訊息中,可基於在MS上的計算來提供所需 T/P及其持續時間。此種請求訊息可不包括回饋至bS的 backlog與Q〇S。BS不能基於backlog與Q〇S類計算所需T/P 及其持續時間。為管理Q〇S (速率、訊包損失、最大延遲), 請求T/P及其持續時間的週期性訊息較佳為backlog與QoS O:\91\91362.DOC -23- 200423762
颂的週期性回饋。作為回應,Bs可藉由核准訊息制定對MS 的丁/P與持續時間的配置。該MS繼續更新其(本地)速率與持 、只%間的计异。無論何時,只要在所需τ/ρ中出現顯著變 化,或所需持續時間超過所配置的持續時間一顯著量,即 觸發一更新請求。具有零Τ/Ρ配置之核准指示MS核准的終 止。 一旦為MS核准一 T/P,為降低請求訊息費用,可利用低 頻覓連續反向鏈路請求通道。該MS保持基於來自BS的核准 之S 4核准(Current Grant)變數。或者,該核准可能為隱含 的,即允許任何MS自主將其當前核准變數設定為當前核准 的全局(初始)值,藉此消除對任何訊息的需求。 基於對所需速率的計算,MS連續傳送請求,用以使其當 W核准增大、降低或不變。若需要增量以滿足在各種擁塞 位準的Ί7Ρ,則亦指示對增大的τ/ρ之請求。在此訊息中可 包括對2位元差動速率請求(Differentiai Rate以叫^丨)攔位 的編碼。該MS指示其與所需速率與擁塞速率相關之當前核 准的位準’例如,若當前核准在所需Τ/ρ與擁塞位準1 τ/ρ 之間’則MS請求包括編碼的位元r 1〇」。或者,可包括2位 元差動速率睛求(2_bit Differential Rate Request)攔位,其僅 包含1個擁塞位準以及防止緩衝器因易受延遲影響之流量 而下溢之新位準。
O:\91\91362.DOC -24 - 200423762 當前核准 請求 11 10 01 00 所需Ί7Ρ 擁塞位準1 ΤΛ3 擁塞位準2 τ/ρ Τ/Ρ請求向MS指示與所需Τ/Ρ以及擁塞Τ/Ρ相關的當前核准之位準。 編碼2位元差動T/P請求欄位 當前核准請求 可降低T/P · 11 所需 T/P _ „ 二二 1〇 -------------- 01 擁塞位準T/P -二______ Μ T/P請求向MS指示與所需T/P、擁塞T/P、以及可造成 緩衝器下溢之T/P相關的當前核准之位準。 替代性編碼2位元差動T/P請求欄位 視需要’亦可定義預看長期核准臨界值D〇。若MS計算其 所需持續時間超過D〇,則其指示對長期核准之請求。其有 一定作用,因其允許BS預看並藉此更好地管理其資料配置 以及排程決策。對於排程器而言,對高速率之請求為「優 先權」請求,而對長期核准之請求則指示backlog。 或者,可使用兩個位元代表該佇列頭部訊包的延遲截止 期限(或優先權等級)。例如:
優先權等級 訊包佇列頭部的延遲截止期限 3 低於X
2 大於X,但低於3X O:\91\91362.DOC -25- 200423762 大於3X,但低於9X 0 大於9X(即,最佳努力) X為系統參數,可針對BS@定其值,或根據每個MS之服 務的混和來固定其值。 。亥MS使用當别核准T/p值在該反向鏈路上發射。該 根據當前發送決定該%8上的當前核准變數之值。該藉由 測量流量通道功率與該“8發送的前導功率間的比率,或根 據该MS用以發送之速率並將其映射至τ/ρ,來決定此值。 該BS資源管理器使用該MS使用的當前τ/ρ,以及該τ/ρ請 求中的資訊,以在MS中公平配置τ/ρ。例如,根據該擁塞 位準’其僅能滿足所有“8的擁塞位準1的需求。然後,該 BS將為其請求指示〇〇或01的MS配置Τ/Ρ增量,且指示00之 MS請求有較高優先權。該BS將為其請求指示11或10的]^8 配置T/P減量。該BS亦可使用額外的準則來管理ms之間的 競爭。 可藉由下列範例解釋該BS資源管理器的操作。考量具有 三個MS之情形: MS 1: 前導[1],當前核准[1],請求=10 MS 2: Ec〜前導[2],當前核准[2],請求=〇1 MS 3: Ec〜前導[3],當前核准[3],請求=〇1 MS 4: 前導[4],當前核准[4],請求=11 MS 5: Ec、前導[5],當前核准[5],請求=〇〇 MS 6: Ec〜前導[6],當前核准[6],請求=10 注意’在以上範例中,所有的MS,除了 MS 4之外,皆需
O:\91\91362.DOC -26- 200423762 要冋於田月il核准之τ/ρ,以滿足所,需τ/ρ。可為MS 4指派對 其田刖核准之-減量。是否向其他MS提供增量配置,取決 於進一步的計算。該BS資源管理器能夠根據一前 導與當前核准計算當前的資源利用,如下所示:
Resource Utilization Ec_Pilot[i]*[Current Grant [i] + 1] (i3) 該BS核准與當鈾核准相關的一增量(向上調整)或一減量 (向下調整)。該增量或減量為當前核准的乘法因數,其值 Adjust[i]分別由(1+a)或(i_a)所給。然後,遵循配置,可計 算更新的資源利用,如:
Resource Utilization^ Ec^Pilot[i]*[Adjust[i]*Current Grant[i]+1] (14) 藉由下列步驟實行該資源管理器演算法。其終止於在更 新的資源利用低於最大資源利用臨界值Tinax處求出一組 調整值Adjust[i]之步驟。 步称1為MS 4指派減量,為所有其他Ms指派增量。若 1=1、2、3、5、6,則 Adjust[4] = l-a,Adjust[i] = l+a。此配 置嘗試移動所有MS以滿足其所需的τ/Ρ。決定更新的資源 利用。若更新的資源利用低於最大臨界值Tmax,則可允許 並指派此項配置。若資源利用超過Tmax,則進行至步驟2。 步驟2不可能使所有的MS向所需T/P移動。為公平起見, 該程序使所有的MS向擁塞位準1 T/P移動。這意味著,除了 MS 4以外,亦為MS 1與MS 6指派一向下調整。即,若i=l、 4、6 ’ 則 Adjustfi^l-a,若 i=2、3、5,則 Adjust[i] = l+a。 再次決定是否允許此更新資源配置,即,不超過所允許的 總配置。若不允許,則進行至步驟3。 O:\91\91362.DOC -27- 200423762 步称3不可能使所有的MS向擁塞位準1 丁/p移動。為公平 起見’该程序使所有的MS向擁塞位準2 T/P移動。這意味 著’為除了 MS 5之外的所有的ms指派一向下調整。即,若 1 = 1、2、3、4、6,則 Adjust[i] = l-a,且 Adjust[5] = l+a。再 次決定是否允許此更新資源配置,即,不超過所允許的總 配置。若不允許,則進行至步驟4。 步驟4該BS T/P調整演算法不能決定一滿意的配置。需要 明確訊息以終止來自一個或多個Ms的發送。該68根據各種 準則遥擇終止哪個核准,其包括:公平性,以及對當前 配置的尺寸。 可使用低頻覓連績正向鏈路核准通道,以向“§指示對當 前核准的調整。該MS根據其從該38接收的實際核准(以及 调整)修改其當前核准變數。因為核准向“§連續延伸,故不 需要向MS指示一長期核准。該長期核准請求(若使用)僅允 許該BS可預看,並因此制定更好的排程決策。 在該低頻寬連續正向鏈路核准通道上的編碼如下所示: ±1若命令該行動台使t/p增域配置的量,(亦可為τ/ρ依 賴) 1若命令該行動台使Τ/Ρ降低所配置的量,(亦可為τ/ρ依 k右命令該行動台保持Τ/Ρ不 若BS不能可靠地解碼該連續請求通道(例如,以低功率4 收反向前導通道—erse Piiot ehannel; R_PICH)並抹除連彡 的請求通道符號),則BS將正向核准通道符號設定為、 O:\91\91362.DOC -28- 200423762 則,若能可靠地解碼該連續請求通道,則BS將適當地設定 該正向核准通道符號。 雖然該BS資源管理器基於該MS請求決定該擁塞位準,而 並非每個MS需要一連續核准通道,但藉由損失一定的靈活 性,可能可使用僅指示BS上當前所計算的擁塞位準之連續 共同核准通道(例如,料以上所示三個位準之—來編碼)。 基於此種指7F ’ MS可根據相同的邏輯自主調整其資料速 m 率。例如,當BS共同核准指示擁塞位準㈣,請求1〇的廳 必需降低其τ/Ρ,而請求01的_可增大其τ/ρ,用於隨後的 發送。此外’降低該正向鏈路上的費用時,連續共同核准 通道使BS不具備基於額外的準則以在競爭娜間辨別之能 1亦可i /肖除该連~請求通道,並將其降低為⑽的自主 =作。該BS的擁塞指示係基於對該奶資源使用的當前測 里而非MS明求。因此,不存在用於每個⑽的閉合迴路。 在此情形下’該BS不能區別滿足其Q〇s的廳與不滿足其 QoS的MS,故無法實現公平。 如此,連續請求與核准通道中的發信錯誤並非災難性 的。饭定在該連續正向核准通道上的抹除(⑽)為使當前 祆隹不艾之》p 7纟於低延遲閉合迴路機制,可报快藉由 隨後的請求與核准校正任何發信錯誤。特定言之,在每個 反向鍵路訊框發送中兮 。亥卯已知MS上的本地變數當前核 准,且允許該控制迴路的兩側保持相同的狀能。 :能:使用該請求與核准訊息,以操作該:向鏈路Q〇S 官然而,對於嚴格⑽管理而言,即為具有叢發抵達、
O:\91\91362.DOC -29- 200423762 可變速率以及嚴格延遲約束之服務管理Q〇S,必需使用連續 清求與核准通道。注意,可使用該連續請求通道,而不使 用連績核准通道。 對於所協商的QoS流量,MS可如下操作: • Ms傳送指示該所需T/P(以及擁塞T/P)之請求訊息。該 明求δίΐ息亦可包含最大τ/ρ(在該MS中的裕度)。該BS可藉由 A心心示T/P核准’或者可隱含指示該核准(已知初始τ/ρ)。 在後者情形中,不需要請求或核准訊息。 在低費用連續速率請求通道上指示所需T/P的變化。以 層3發信建立或釋放該通道。因為此通道代表該MS的總速 率需求,故每個MS僅需要一個此種通道。 。亥基地口在正向鏈路上的低費用連續核准通道上指示 所核准T/P的變化。或者,可使用低費用連續共同核准通 返’其基於所接收的請求指示該擁塞位準。 在軟交遞操作期間,基於訊息的反向資源管理僅由伺服 B士S控制(該BS具有在⑽所接收的最高平均前導位準)。該連 續請求與核准通道僅由祠服BS或由縮小的則的現用华來 接收或發射。若僅由伺服BS發射該連續核准通道,則軟交 遞中的操作與行動台不進行軟交遞時的情形並無不同。缺 而,若從該現心中上的崎㈣正向快速核准通 這’則不同的BS可獨立操作且產生不同的核准命令。缺後, 要未該MS將其當前核准變數調整至該現用集中所有請 皆核准之速率調整的最小值。 每個MS用於連續請求與核准通道之f用可與每數百
O:\91\91362.DOC -30- 200423762 秒使用—次基於訊息之通道的費用相比擬。因此,為符人
費用要求,不需以高於(例如)每個Ms 250毫秒之頻率S 速率請求與速率核准訊息,其包括該Ms中的所有服務。· 要連續回饋通道來管理服務的QgS,其中最大延遲低 如)1〇〇毫秒。即便對於具有叢發抵達之服務,#中該❹ 尺寸可出現數十毫秒的顯著變化。若延遲截止期限大於250 毛心,則藉由基於訊息之請求與核准通道管理該QoS。每 至40*秒,將需要用於連續反向速率請求通道之2至4個位 元。此等位元向BS指示所請求對其分配的速率之修改與/ 或對長期核准之需要。 一般而言,揭示用於在該反向鏈路上進行Q〇s與資源管 理之架構,其中該訊包仔列在刚上分佈,且該中央資源管 理器在該BS上。在此架構中,將反向鏈路Q〇s管理的責任 指派給MS,而BS管理用於所協商的Q〇s服務之集中資源與 容許控制。該MS向該資源管理器提供所需的資源(速率或 T/P),其用以滿足該MS的Q〇s。其有別於先前馗8向該資源 官理态提供佇列backlog資訊之方法。該佇列“仏丨吆資訊對 於資源管理器用以滿足QoS保證而言,並不充分。透過ms 對所配置的速率或T/P的閉合迴路控制管理反向鏈路Q〇s。 將對多個服務(或流)的QoS需求合併為一資源(速率或τ/ρ) 的壓縮表不。其允許有效的閉合迴路控制(低通信費用)。其 允許該MS決定一所需的丁/Ρ,這將允許其滿足所有服務的 QoS需求。在訊包離開、訊包抵達、所配置速率變化或鏈路 品質變化之後,可使用低複雜度機制重新計算速率(或τ/ρ)
O:\9l\91362.DOC -31 - 200423762 以及持續時間需求。與該架構一致的低# 、έ婷& … 傅蚁的低費用連績請求與核 紅於為最大延遲需求低於100毫秒之服務管理其 〜揭不_種藉由使用訊包料棄優先權,以計算用於不 同擁塞位準之T/p f:、戈夕姜口皮 " 耘序0揭不一種速率請求通道的壓 縮編媽’其向細資源管理器提供資訊,用以決定分佈在 MS間的訊包仔列中的擁塞位準。另外,其允許謂資源管 心制定競爭MS間的智慧配置決策。因此,操作細資源 官理减在競爭MS間配置資源,包括軟交遞中對閉合迴路 速率控制的操作。 參考圖4描述的各種步驟,可更加明瞭本發明的各種方 面。圖4描述通信系統1〇〇中則與奶上訊息流彻與處理步 驟。當併入通信系統100的各別的基地台或行動台時,可操 作圖2與3所不之接收器與發射器系統2⑼與3⑼以實行各種 H在㈣401 ’該行動台為數個通信服務決定發送的資 料訊包:在步驟4 〇 2與4 〇 3 ’該行動台分別決定各個資料訊 包的發达截止期限’並按照所決定的發送截止期限排列發 =佇列中的資料訊包。在步驟405、4〇6與4〇7中,該行動台 $別根據允許滿足各個資料訊包的發送戴止期限之佇列中 =料訊包的排列,決定發送資料訊包之資料速率,根據該 仵列中資料訊包的排列’決定發送資料訊包之所決定資料 速率的持續時間’並進行從該行動台至該基地台之資料速 率與持續時間的通信。在步驟408,該基地台決定是否允許 在基地台配置可用資源,用於從該行動台以決定的資料速 率與持續時間發送。在步驟409,該基地台進行從該行動台
O:\91\91362.DOC -32- 200423762 發送資料訊包之所決定眘祖、* 、疋貝枓速率的可接受度之通信。在步 驟41 0,該行動台以可接♦杳 安又貝枓速率進行發射。在步驟411, 該基地台可向該行動台指示_擁塞位準警示,不允許在兮 基地台上配置所決定的可„源,用於從該行動台以心 定的貢料速率進行發送。在步驟412、413與414中,該行動 台丟棄該符列中該等資料訊包中的至少_個資料訊包,以 決定一新的資料訊包”,決定發送該新的資料訊包作列 之新的資料速率,該新的資料速率低於先前所決^之資料 速率,並根據該新佇列中資料訊包的排列,決定使用所決 疋的新資料速率發送貢料訊包的新持續時間。流4〇〇進行至 步驟408,以重複決定接受或拒絕。 熟習此項技術者應進一步明白,配合本文所揭示之具體 實施例說明的各種說明邏輯區塊、模組、電路及演算法步 驟可實施為電子硬體、電腦軟體或二者之組合。為了清楚 說明硬體及軟體之此互通性,以上已就其功能性總體說明 各種說明性組件、區塊、模組、電路及步驟。此類功能係 實施為硬體或軟體取決於整體系統所用的特定應用及設計 限制。熟習此項技術者可採用各種方法實施各特定應用所 說明之功能,但此類實施決策不應解釋為會引起背離本發 明之範疇。 結合在此揭示的具體實施例所說明的各種說明性邏輯區 塊、模組及電路,可採用通用處理器、一數位信號處理器 (digital signal processor ; DSP)、一特殊應用積體電路 (application specific integrated circuit ; ASIC)、一現場可程 O:\91\91362.DOC -33- 200423762 式化閘極陣列(field programmable gate array ; FPGA)或其 他可程式化邏輯構件、離散閘極或電晶體邏輯、離散硬體 組件或設計用以實行本文所述功能之任何組合來實施或實 行。通用處理器可為微處理器,但在替代範例中,處理器 可為任何傳統處理器、控制器、微控制器或狀態機。一處 理器也可實施為電腦構件之一組合,例如,一 Dsp及一微 處理器之一組合、複數個微處理器、與Dsp核心連接的一 或多個微處理器或任何其他此類配置。 結合本文所揭示具體實施例說明的方法或演算法的步驟 可以直接用硬體、由處理器執行的軟體模組或兩者之組合 來實現。軟體模組可駐留於RAM記憶體、快閃記憶體、r〇m 記憶體、EPROM記憶體、EEPR〇M記憶體、暫存器、硬碟、 可抽取磁碟、CD-R0M、或此項技術中所熟知之任何其他 形式的儲存媒體中。一種範例性儲存媒體係耦合處理器, 以致於處理器可自儲存媒體中讀取資訊,以及寫入資訊到 儲存媒體。在替代範例中,該儲存媒體可與該處理器整合。 該處理器及該儲存媒體可駐留於一 ASIC中。_asic可駐口留 於-使用者終端機之内。在替代範例中,該處理器及該儲 存媒體可以分録件的形式駐留於_使用者終端機内。 刖文中提供較佳具體實施例的說明,m熟習政匕項技術者 可貫施或使用本發明。熟習此項技術者應明白這些具體實 施例的各種修改,並且本文中定義的_般原理可應用於未 使用本發明功能的其他具體實施例。因此,本發明並非欲 受限於此處所示的具體實施例,而係符合與此處所揭示之
O:\91\91362.DOC -34 - 200423762 原理及新穎特徵相一致之最廣範疇。 【圖式簡單說明】 上文已參考附圖作詳細說明,使本發明的功能、目的及 優點更明自’整份圖式中相同的參考文字視為對應的相同 事物,其中: 圖1根據本發明的久個方面,>、+、m ^ ^1 m锅述用以發送與接收資料之 通信系統; 、 以接受資料之接收器 圖2根據本發明的各個方面,描述用 糸統; 圖3根據本發明的各個方面,描 ^ 处用以發送資料之發射器 系統;以及 圖4描述用以決定反向鏈路通信 、Ίο的貝料速率之訊息流與 程序。 【圖式代表符號說明】 100 通信系統 101 基地台 102 、 103 、 104 行動台 105 Α 又換電話與資料網路 106 正向鏈路信號 107 、 1〇8 、 109 反向鏈路信號 160 基地台 161 正向鏈路信號 199 回程 200 接收器 i62.DOC -35- 200423762 204 RAM 206 搜尋器單元 208 指狀元件 210 控制系統 212 組合器 214 解碼器 252 多工器 290 射頻/中頻系統 292 天線系統 300 發射器 301 調變器 302 組塊 303 資料速率與功率位準選擇器 304 天線 307 組塊 308 組合器 309 放大器 O:\91\91362.DOC - 36 -
Claims (1)
- 200423762 拾、申請專利範園: 種在一通信系統中, 卜 反向鏈路通…c仃動台至-基地台之 、降U之貝枓速率之方法,其包括: 丁動台發送之用於數個通信服務之資料訊包; 決疋母個該等資料訊包的一發送截止期限; —根據該決定的發送截止期限,排列—發送㈣ 賢料訊包; 勺忑寺 /艮據允許滿^每個該等資料訊包之該發送截止期限之 。亥〇列巾的該等資料訊包的該㈣,決定發送該等資料訊 包之一資料速率。 、σ 2. 3. 4. 如申請專利範圍第丨項之方法,其進一步包括: 進行從該行動台至該基地台之該資料速率的通信。 如申請專利範圍第1項之方法,其進一步包括: 根據該仔列中該等資料訊包的該排列,決定使用該決定 的資料速率發送該等資料訊包的持續時間。 如申請專利範圍第3項之方法,其進一步包括: 之該決定的持續時間的通 進行從該行動台至該基地台 信0 5.如申請專利範圍第1項之方法,其進一步包括: 決定是否允許在該基地台上配置可用資源,用以從該行 動台以該資料速率進行發送。 6 ·如申请專利範圍第5項之方法,其進一步包括: 當該決定不允許在該基地台上配置可用資源,用以從該 行動台以該資料速率發送時,向該行動台指示一擁塞位準 O:\91\91362.DOC 200423762 警示。 7. 如申,專利範圍第6項之方法,其進一步包括: ::::列中該等資料訊包中的至少—個資料訊包,以 '、疋新賢料訊包作列; 決定用以發送該新資料訊包❹卜 該新資料速率係低於該資料速率。彳貝枓速革,、中 8. 如申請專利範圍第7項之方法,其進一步包括: 定===該等資料訊包的該排列,使用該決 9. -種在—二㈣貧料訊包之-新持續時間。 反向鏈路通=1;;以決定從—行動台至一基地台之 決定從該二I:料速率之方法,其包括: 決定每個該等用於數個通信服務之資料訊包; 根據該決定的發 的該等資料訊包· / ^ ^數個發送佇列排列中 根據该等數個可 之數個資料速率。、T列排列,決定發送該等資料訊包 10·如申請專利範圍第9項 速率包括一所兩沾次、法,其中該等數個決定的資料 速率。 、貝料速率以及至少一個擁塞位準資料 11。如申請專利範圍第9項之 進行從該行動台至該其/ 5其進f步包括: 信。 Μ 土地台之該等數個資料速率之通 12·如申請專利範㈣9 、 方去,其進一步包括: O:\91\9i362.DOC 200423762 根據該㈣相特料訊包的 等數個決定的次把$方* J決疋使用每個該 u成疋的貝枓速率發送該等資 13.如申請卷剎^ p ^ f σί1包之持績時間。 用專利乾圍第12項之方法,其進-步包括: 進行從該行動台至該基地台之該 信。 、疋的持續時間之通 14·如申請專利範圍第9項之方法,其進一步包括· 决疋疋否允許在該基地台上配 動a w今雙& 用貝源’用以從該行 動口以孩寺數個資料速率中的至少一個 “丁 15·如申請專利範圍第14項之方法,其進一乎勺 當該決定允許在該基地台上配置 匕括· 動么以兮樂次 」用貝源,用以從該行 口 ^荨貝料速率中的至少一個進行&、、, 動台。 硬仃务迗時,指示該行 16. —種在一通信系統中,用以決定從— 反向鏈路通信之-資料速率之裝置,其包口括至·一基地台之 服二=,其用以決定從該行動台發送之用·於數個通信 服務之貢料訊包; < 期=定構件,其用以決定每個該等資料訊包的—發送截止 排列構件,其用以根據該決定的發送截止期限,排列— 务运仵列中的該等資料訊包; 件’其用以根據允許滿足每個該等資料訊包之該 ^达截止期限之該佇列中的該等資料訊 匕的该排列,決定 七k σ亥荨—貝料訊包之一資料速率。 17. 如申請專利範圍第16項之裝置,其進一步包括· O:\91\91362.DOC 200423762 通仏構件’其用以進行從該行動台至該基地台之該資料 速率之通信。 18.如申請專利範圍第16項之裝置,其進一步包括: 决疋構件,其用以根據該佇列中該等資料訊包的該排列 ,決定使用該決定的資料速率發送該等資料訊包之持續時 間0 19.如申請專利範圍第18項之裝置,其進一步包括·· 通信構件,其用以進行從該行動台至該基地台之該決定 的持續時間之通信。 20. 如申請專利範圍第16項之裝置,其進一步包括: 一决疋構件,其用以決定是否允許在該基地台上配置可用 資源,用以從該行動台以該資料速率發送。 21. 如申請專利範圍第2〇項之裝置,其進一步包括: 指示構件’其用以當該^不允許在該基地台上配置可 =源,用以從該行動台以該資料速率發送時,向該行動 口才日不一擁塞位準警示。 22·如申請專利範圍第21項之裝置,其進-步包括: I:棄構件,其用以去棄該件列中的該等資料訊包中… 貧料訊包’以決定-新資料訊包佇列; 新其用以決定用以發送該新資料訊包仵列之- 23 =率,其中該新資料速率係低於該資料速率。 •申h專利範圍第22項之裝置,其進一步包括. 列===該新㈣中該”料訊包的該. 使用遠決疋的新:貪料速率發送該等資料訊包之 O:\91\91362.DOC -4- 200423762 新持續時間。 24· 一種在—通信系統中用以決定從一 反向鏈路通信之一資料速率之 。至-基地台之 決定構件,其用以決定㈣㈣台發匕括·· 服務之資料訊包; 之用於數個通信 決定構件,其用以決定每個該等 期限; 、+包的一發送截止 排列構件,其用以根據該決定的發送 個發送仵列排列中的該等資料訊包;顧,排列數 發用以根據_個可能的仵列排列 、孩寺貝料訊包之數個資料速率。 利範圍第24項之裝置,其中該等數個決定的資料 速率^戶斤需的貧料速率以及至少-個擁塞位準資料 26·如申請專利範圍第24項之裝置,其進一步包括: 通信構件,其用以進行從該行動台至該基地台之該等數 個資料速率之通信。 、 27·如申請專利範圍第24項之裝置,其進一步包括: 決定構件,其用以根據該佇列中該等資料訊包的該排列 夬疋使用母個該等數個決定的貨料速率發送該等資料訊 包之持續時間。 28.如申請專利範圍第27項之裝置,其進一步包括: 通信構件,其用以進行從該行動台至該基地台之該決定 的持續時間之通信。 O:\91\91362.DOC 200423762 29·如申請專利範圍第 貝炙衣置,其進一步包括: 決定構件,其用以決定 次、 又疋古兄泎在该基地台上配置可用 貢源’用以從該行動台以兮 、隹… ㈣口以㈣數個資料速率中的至少一個 進仃發送。 30·如申請專利範圍第29項之裝置,其進_步包括: 次才日不構件,其用以當該決定允許在該基地台上配置可用 貝源,用以從該行動台以該等資料速率中的至少一個進行 發送時’指示該行動台。 〇A91\91362.D〇c
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| US8081598B2 (en) | 2003-02-18 | 2011-12-20 | Qualcomm Incorporated | Outer-loop power control for wireless communication systems |
| US20040160922A1 (en) | 2003-02-18 | 2004-08-19 | Sanjiv Nanda | Method and apparatus for controlling data rate of a reverse link in a communication system |
| US8150407B2 (en) * | 2003-02-18 | 2012-04-03 | Qualcomm Incorporated | System and method for scheduling transmissions in a wireless communication system |
| US7660282B2 (en) | 2003-02-18 | 2010-02-09 | Qualcomm Incorporated | Congestion control in a wireless data network |
| US9544860B2 (en) | 2003-02-24 | 2017-01-10 | Qualcomm Incorporated | Pilot signals for use in multi-sector cells |
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- 2004-02-17 JP JP2006503642A patent/JP4611973B2/ja not_active Expired - Lifetime
- 2004-02-17 KR KR1020057015105A patent/KR20050098944A/ko not_active Ceased
- 2004-02-17 EP EP04711869.0A patent/EP1595419B1/en not_active Expired - Lifetime
- 2004-02-17 CN CN2004800101172A patent/CN1774950B/zh not_active Expired - Lifetime
- 2004-02-17 WO PCT/US2004/004668 patent/WO2004075593A2/en not_active Ceased
- 2004-02-17 MX MXPA05008659A patent/MXPA05008659A/es active IP Right Grant
- 2004-02-17 BR BRPI0407568-4A patent/BRPI0407568B1/pt active IP Right Grant
- 2004-02-17 AU AU2004213980A patent/AU2004213980C1/en not_active Ceased
- 2004-02-18 TW TW093103849A patent/TWI451786B/zh not_active IP Right Cessation
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Also Published As
| Publication number | Publication date |
|---|---|
| JP2006518577A (ja) | 2006-08-10 |
| WO2004075593A3 (en) | 2004-11-11 |
| JP4611973B2 (ja) | 2011-01-12 |
| TWI451786B (zh) | 2014-09-01 |
| CA2516219C (en) | 2019-10-29 |
| BRPI0407568A (pt) | 2006-02-14 |
| BRPI0407568B1 (pt) | 2018-06-12 |
| AU2004213980C1 (en) | 2010-01-14 |
| US9998379B2 (en) | 2018-06-12 |
| AU2004213980B2 (en) | 2009-08-13 |
| CN1774950A (zh) | 2006-05-17 |
| EP1595419A2 (en) | 2005-11-16 |
| AU2004213980A1 (en) | 2004-09-02 |
| MXPA05008659A (es) | 2005-11-23 |
| WO2004075593A2 (en) | 2004-09-02 |
| US20150256463A1 (en) | 2015-09-10 |
| KR20050098944A (ko) | 2005-10-12 |
| CA2516219A1 (en) | 2004-09-02 |
| CN1774950B (zh) | 2011-06-29 |
| EP1595419B1 (en) | 2019-04-24 |
| US20040160922A1 (en) | 2004-08-19 |
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