TWI531176B - 用於處理在一無線網路中裝置內共存干擾之方法、設備與系統 - Google Patents
用於處理在一無線網路中裝置內共存干擾之方法、設備與系統 Download PDFInfo
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- TWI531176B TWI531176B TW103101130A TW103101130A TWI531176B TW I531176 B TWI531176 B TW I531176B TW 103101130 A TW103101130 A TW 103101130A TW 103101130 A TW103101130 A TW 103101130A TW I531176 B TWI531176 B TW I531176B
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- H04L2209/00—Additional information or applications relating to cryptographic mechanisms or cryptographic arrangements for secret or secure communication H04L9/00
- H04L2209/24—Key scheduling, i.e. generating round keys or sub-keys for block encryption
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L2209/00—Additional information or applications relating to cryptographic mechanisms or cryptographic arrangements for secret or secure communication H04L9/00
- H04L2209/80—Wireless
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0058—Allocation criteria
- H04L5/0076—Allocation utility-based
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/0091—Signaling for the administration of the divided path
- H04L5/0094—Indication of how sub-channels of the path are allocated
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L9/00—Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
- H04L9/14—Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols using a plurality of keys or algorithms
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W12/00—Security arrangements; Authentication; Protecting privacy or anonymity
- H04W12/50—Secure pairing of devices
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W84/00—Network topologies
- H04W84/02—Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
- H04W84/04—Large scale networks; Deep hierarchical networks
- H04W84/042—Public Land Mobile systems, e.g. cellular systems
- H04W84/045—Public Land Mobile systems, e.g. cellular systems using private Base Stations, e.g. femto Base Stations, home Node B
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
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- Y02B70/30—Systems integrating technologies related to power network operation and communication or information technologies for improving the carbon footprint of the management of residential or tertiary loads, i.e. smart grids as climate change mitigation technology in the buildings sector, including also the last stages of power distribution and the control, monitoring or operating management systems at local level
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02D—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
- Y02D30/00—Reducing energy consumption in communication networks
- Y02D30/70—Reducing energy consumption in communication networks in wireless communication networks
Description
本申請書請求在2013年1月17日提申的美國臨時專利申請案號61/753,914的優先權,其完整揭露書在此合併於文中以供參考。
本發明的實施例大致上係有關於通訊的領域,且更精確地,有關於如何處理在一無線網路中的一裝置內共存干擾。
越來越多的行動裝置,記為一使用者端設備(UE),可裝配有複數個在不同的無線協定上操作的收發器,無線協定如長期演進(LTE)協定、Wi-Fi協定、藍牙協定、全球導航衛星系統(GNSS)協定,和/或其他者。這種方法可允許使用者無所不在地存取不同的無線網路以及服務。然而,這也可能引入在並列的收發器之間的裝置內共存(IDC)干擾,由使用者端設備的一小波形因數所造成。舉例來說,如果一長期演進模組在跟一藍牙模組傳送資訊大致上為相同的時段中接收資訊,裝置內共存干擾可能會在長期演進模組與藍牙模組之間發生。
依據本發明之一實施例,係特地提出一種由一使用者端設備(UE)所使用的方法,包含:偵測在於一第一協定上操作的一第一通訊模組與於一第二協定上操作的一第二通訊模組之間的一裝置內共存(IDC)干擾;產生一裝置內共存讀數,其具有一包含四個字元的字串,其中該四字元對應於一包含四個子訊框的子訊框圖型,且該字串中一字元的一數值表明一增強節點B(eNB)是否被要求不得使用該中該四個子訊框的其中一子訊框;以及將該裝置內共存讀數經由一無線通訊網路傳送至該增強節點。
100‧‧‧系統
101‧‧‧使用者端設備
102‧‧‧增強節點B
103、105‧‧‧無線網路
104‧‧‧裝置
112‧‧‧天線
114‧‧‧長期演進模組
116‧‧‧藍牙模組
118‧‧‧裝置內共存模組
122‧‧‧裝置內共存干擾偵測模組
124‧‧‧裝置內共存干擾管理模組
132‧‧‧長期演進模組
134‧‧‧裝置內共存管理模組
201-207‧‧‧步驟
301-305‧‧‧步驟
400‧‧‧系統
404‧‧‧處理器
408‧‧‧系統控制邏輯
412‧‧‧系統記憶體
416‧‧‧非依電性記憶體/儲存器
420‧‧‧網路介面
424‧‧‧指令
432‧‧‧輸入/輸出裝置
本發明的實施例在所附圖式中被經由示例的方式,且不為限定的方式說明,其中相同的編號是參照相同的元件。
圖1根據不同的實施例示意地說明一無線通訊系統。
圖2根據不同的實施例示意地說明一用來處理一裝置內共存干擾的方法。
圖3根據不同的實施例示意地說明一由一增強節點B(eNB)所運用,用來處理一裝置內共存干擾的方法。
圖4根據不同的實施例示意地說明一示例系統。
本揭露書的說明用實施例包括,但不限定於,用來處理在一無線網路中的裝置內共存干擾的方法、系統、以及設備。
說明用實施例的不同方面將被利用由熟習此技人士之間常運用的詞描述,以傳達他們工作的物質給其他熟習此技的人士。然而,將會對熟習此技人士來說明顯的是,一些替代的實施例可被利用被描述方面之部分來實踐。為了解釋的目的,特定的編號、物料以及配置被闡述以提供一對說明用實施例徹底的理解。然而,將會對熟習此技人士來說明顯的是,一些替代的實施例可被不靠特定的細節來實踐。在其他實例中,周知的特徵被省略或簡化以不使說明用實施例變得模糊。
進一步地,不同的操作將被以多數的離散操作輪流以一最能幫助說明用實施例的方式描述;然而,描述的順序不應被解釋為意味著這些操作是必然依賴於順序的。尤其,這些操作並不需被以所呈現的順序施行。
片語”在一實施例中”被重複使用。此片語大致上並不參照同一實施例;然而,有可能參照。名詞”包含”、”具有”以及”包括”為同義的,除非上下文規定相反結果。片語”A/B”代表”A或B”。片語”A和/或B”代表”(A)、(B)、或(A和B)”。片語”A、B及C至少一者”代表”(A)、(B)、(C)、(A和B)、(A和C)、(B和C)或(A、B和C)”。片語”(A)B”代表”(B)或(AB)”,也就是說,A是選擇性的。
雖然特定的實施例已經在本文中被說明及描述,將被此領域具有通常技術之人士鑑別的是,各種各樣的替代和/或相等的實作例可被置換至原本所示以及所描述的特定實施例,而不會脫離本揭露書中實施例的範圍。本申
請案意圖包覆本文所討論實施例的改編或者變化。因此,明白地意圖的是本揭露書的實施例僅被請求項以及其均等範圍所限定。
如本文所使用的,名詞”模組”可參照、為其一部份、或包括一特殊應用積體電路(ASIC)、一電子電路、一處理器(共享、專用或者群組)和/或執行一或多軟體或韌體程式的記憶體(共享、專用或者群組)、一組合邏輯電路、和/或其他提供所述功能性的適當組件。
圖1根據不同的實施例示意地說明一無線通訊系統100。無線通訊系統100(以下稱為”系統100”)可包括一配置成來與其他組件在不同無線網路上通訊的使用者端設備101,舉例來說,與一增強節點B102在一無線網路103上通訊、以及與一裝置104在無線網路105上通訊。使用者端設備100可被實施為,無限定地,一智慧型手機、一蜂巢式電話、一平板電腦、一消費者電子裝置,一膝上型電腦、一筆記型電腦、一行動計算系統、一基於處理器的系統、和/或任意其他配置成以網路干預來偵測和處理裝置內共存干擾的行動通訊裝置。
在不同實施例中,使用者端設備101可包含複數個天線112、一長期演進模組114、一藍牙模組116、一裝置內共存模組118和/或其他者。使用者端設備101之長期演進模組114可於無線網路103上從增強節點B102接收資訊或傳送資訊至增強節點B102,無線網路103的操作與一第三代合作夥伴計劃(3GPP)長期演進的頻分雙工配置一致,如一演
進統一陸地無線接取網路(E-UTRAN)。使用者端設備101之藍牙模組116可於無線網路105(例如,一微網網路)上從裝置104接收資訊或傳送資訊至裝置104,無線網路105的操作與藍牙技術聯盟(SIG)標準的一藍牙規格一致。雖然圖1說明了長期演進模組114及藍牙模組116,使用者端設備101可包括額外或較少的在其他協定下通訊的收發器,例如一WiFi收發器、一全球導航衛星系統收發器等。
在不同實施例中,裝置內共存模組118可偵測及管理在使用者端設備101的兩收發器(例如,長期演進模組114以及藍牙模組116)之間的裝置內共存干擾。裝置內共存模組118可更包含一裝置內共存干擾偵測模組122以及一裝置內共存干擾管理模組124。裝置內共存干擾偵測模組122可偵測兩收發器之間是否存在裝置內共存干擾。因為使用者端設備101的一小波形因數,兩收發器可能在一相鄰頻帶中同時操作,舉例來說,長期演進模組114接收資訊的大致相同期間內藍牙模組116相鄰頻帶中在傳送資訊。結果是,長期演進模組114可能對藍牙模組116造成裝置內共存干擾或被藍牙模組116干擾。
在不同實施例中,裝置內共存干擾管理模組124可判定裝置內共存干擾是否可被使用者端設備101自行解決。基於一裝置內共存干擾可被使用者端設備101自行解決的判定,裝置內共存干擾管理模組124可與收發器,如長期演進模組114或者藍牙模組116,來解決裝置內共存干擾。舉例來說,基於從裝置內共存干擾管理模組124所得的資訊,
藍牙模組116可改變其藍牙配置,如一藍牙框時序、一傳送與接收對、和/或其他,來解決裝置內共存干擾問題。然而,如果裝置內共存干擾無法被使用者端設備101自行解決且一網路干預是需要的,裝置內共存干擾管理模組124可產生一裝置內共存讀數以被送至增強節點B102,以報告問題並提供可能能夠協助增強節點B102解決問題的資訊。
在不同實施例中,裝置內共存讀數可能表示一具有一或多個子訊框圖型的子訊框圖型列表。裝置內共存讀數的一示例可包含一或多個字串,而各自的字串對應於各自的子訊框圖型。一字串可具有四個字元的大小,而各自的字元對應於子訊框圖型中各自的子訊框。在此,一子訊框可具有1微秒的長度於長期演進技術頻分雙工規格之下而10個子訊框可形成一長期演進訊框。在不同實施例中,子訊框圖型可能包含四個連續的子訊框。
裝置內共存讀數可能表示增強節點B102可能被要求不得使用子訊框圖型中的哪一個子訊框。舉例來說,一字串中的一字元的一數值(例如,數值”0”或數值”1”)可表示增強節點B102是否可被要求不得使用子訊框圖型,對應於字元。字元的數值(例如,數值”0”或數值”1”)可進一步表示增強節點B102是否可被要求不得使用有關於子訊框圖型的混合式自動重送請求(HARQ)程序。
在不同實施例中,混合式自動重送請求程序可被用來可靠地通訊資料從一節點至另一節點。混合式自動重送請求程序可使用一停止並等待協定。舉例來說,一傳輸
實體(例如,使用者端設備101)可將一資料區塊傳輸至一接收實體(例如,增強節點B102)。傳輸實體可停止並等待直到其從接收實體接收到一認可(ACK)或一否定認可(NACK),接著下一個資料區塊即可被傳輸。然而,如果傳輸實體接收到一否定認可,接著同一個資料區塊即可被傳輸。一般來說,長期演進技術頻分雙工可使用多重混合式自動重送請求並行程序,其互相在時間上與彼此相抵消。
基於長期演進技術頻分雙工,一多重混合式自動重送請求定時可為8個子訊框。舉例來說,如果一攜有資料的實體下行共享通道在子訊框n被從增強節點B102傳送至使用者端設備101,接著一混合式自動重送請求認可/否定認可可在子訊框n+4被從使用者端設備101傳送至增強節點B102。類似地,如果增強節點B102在子訊框n傳送一攜有一上行允諾的實體下行控制通道(PDCCH)至使用者端設備101,接著一對應的攜有資料的實體上行共享通道可在子訊框n+4被從使用者端設備101傳送至增強節點B102,一混合式自動重送請求認可/否定認可可在子訊框n+8被從使用者端設備101傳送至增強節點B102,且基於認可/否定認可反應,一新資料或一上行混合式自動重送請求重傳可被在子訊框n+12被從使用者端設備101傳送至增強節點B102,以此類推。
基於以上的多重混合式自動重送請求定時關係,如果一字元的一數值被設定為0(或1)其表明一對應於字元的子訊框n被不得使用,接著子訊框n+4k(k=1,2,3...)可被設
定為0(或1)。舉例來說,如果攜有上行允諾的子訊框n被設定為0(或1),接著攜有資料的子訊框n+4、攜有混合式自動重送請求認可/否定認可的子訊框n+8、以及攜有混合式自動重送請求重傳的子訊框n+12也可被設定為0(或1)。既然長期演進技術頻分雙工的子訊框圖型長度被改為4個子訊框,多重混合式自動重送請求定時關係可被滿足。
在不同實施例中,為了長期演進技術頻分雙工,裝置內共存讀數所表明的子訊框圖型可從滿足系統訊框編號(SFN)mod2=0的一長期演進技術訊框之一第一子訊框開始。其中SFN可代表系統訊框編號,且一長期演進技術訊框可由10個子訊框組成。然而,當被理解的是其他標準可被為了子訊框圖型的起始子訊框設定。舉例來說,起始子訊框可被設定為長期演進技術訊框之第一子訊框其滿足系統訊框編號mod 2=1。舉另一例來說,起始子訊框可被設定為長期演進技術訊框之第一子訊框其滿足系統訊框編號mod n=0或者系統訊框編號mod n=1,其中n為其他偶數。考慮到一子訊框圖型具有4個子訊框且一長期演進技術訊框具有10個子訊框,4與10的一公倍數為20、40、60...,以上為了起始子訊框的技術可幫助保證多重混合式自動重送請求定時關係。
在不同實施例中,使用者端設備101可產生一攜有裝置內共存讀數之無線電資源控制發信號以被傳送至增強節點B102。除了子訊框圖型之外,在一些實施例中,裝置內共存讀數可包含對增強節點B102有用以解決裝置內共
存干擾的其他資訊,如一被影響的載頻列表或其他者。長期演進模組114可將裝置內共存讀數傳輸至增強節點B102。
在不同實施例中,增強節點B102可基於裝置內共存讀數產生一非連續接收模式(DRX)配置資訊,並將非連續接收模式配置資訊傳送至使用者端設備101。非連續接收模式配置資訊可表明一與不同通訊協定場景,如長期演進技術以及藍牙協定場景相關的非連續接收模式圖型。舉例來說,非連續接收模式配置資訊可包含,並無限定為,非連續接收模式周期參數如一長非連續接收模式周期起始偏移、一短非連續接收模式周期、一非連續接收模式不活動計時值、一非連續接收模式重傳計時值、和/或其他者。
在不同實施例中,使用者端設備101之長期演進模組114可基於從增強節點B102接收到的非連續接收模式配置資訊配置其長期演進元件並操作。當有需要時,在裝置內共存模組118的管理下,藍牙模組116可進一步基於非連續接收模式配置資訊配置其藍牙元件。藉由此方法,長期演進模組122可避免在大致相同的時間與WiFi模組124傳輸資訊,從而解決裝置內共存干擾。
在不同實施例中,增強節點B102可包含一長期演進模組132以及一裝置內共存管理模組134。長期演進模組152可從使用者端設備101以及其他無線網路103中的裝置接收資料或傳輸資料至使用者端設備101以及其他無線網路103中的裝置。舉例來說,長期演進模組132可從使用
者端設備101接收裝置內共存讀數。當增強節點B102同意如裝置內共存讀數所表明的子訊框圖型,增強節點B102的裝置內共存管理模組134可基於裝置內共存讀數而產生非連續接收模式配置資訊。在其他情況中,增強節點B102可修改裝置內共存讀數所表明的子訊框圖型,並依之產生非連續接收模式配置資訊。對具有多於一子訊框圖型的裝置內共存讀數,增強節點B102可選擇其中一個子訊框圖型並如上述產生非連續接收模式配置資訊。
基於非連續接收模式配置資訊,使用者端設備101以及增強節點B102可無縫地經由無線網路103溝通而無干擾或被其他無線網路,例如無線網路105所干擾。
圖2根據不同的實施例示意地說明一由使用者端設備101用來處理一裝置內共存干擾的方法。
在不同實施例中,在方塊201,使用者端設備101之裝置內共存干擾偵測模組122或者其他裝置可偵測到裝置內共存干擾存在於在兩通訊協定上操作的二收發器之間,如長期演進模組114以及藍牙模組116。接著,在方塊202,使用者端設備101之裝置內共存干擾管理模組124或者其他裝置可判定裝置內共存干擾是否可被使用者端設備自行解決。反應到裝置內共存干擾可被使用者端設備101自行解決,在方塊203,裝置內共存干擾管理模組124可與長期演進模組114和/或藍牙模組116合作以解決裝置內共存干擾。舉例來說,藍牙模組116可改變其藍牙配置,如一藍牙訊框定時、一傳輸與接收對、和/或其他者,以解決裝置內共存干擾問
題。
然而,反應到裝置內共存干擾不可被使用者端設備101自行解決,在方塊204,裝置內共存干擾管理模組124或其他裝置可產生裝置內共存讀數來表明一或多個子訊框圖型。在不同實施例中,裝置內共存讀數可包含一或多個字串,而各自的字串對應於各自的子訊框圖型。子訊框圖型可包含4個連續的子訊框,且字串可包含4個字元而各自的字元對應於子訊框圖型中各自的子訊框。裝置內共存讀數可表明子訊框圖型中哪一子訊框可被增強節點B102要求不得使用。舉例來說,字串中字元的數值(例如,數值”0”或”1”)可表明增強節點B102是否被要求不得使用對應字元的子訊框。字元的數值(例如,數值”0”或”1”)可進一步表明增強節點B102是否被要求不得使用與子訊框相關的混合式自動重送請求程序。
在不同實施例中,裝置內共存讀數所表明的子訊框圖型可從滿足系統訊框編號mod2=0的一長期演進技術訊框之一第一子訊框開始。然而,當被理解的是其他標準可被為了子訊框圖型的起始子訊框設定。舉例來說,起始子訊框可被設定為長期演進技術訊框之第一子訊框其滿足系統訊框編號mod 2=1。舉另一例來說,起始子訊框可被設定為長期演進技術訊框之第一子訊框其滿足系統訊框編號mod n=0或者系統訊框編號mod n=1,其中n為其他偶數。
在方塊205,長期演進模組114可將裝置內共存讀數經由支持長期演進技術頻分雙工規格的無線網路103傳
送至增強節點B102。基於從增強節點B102在方塊206接收到的非連續接收模式配置資訊,在裝置內共存模組118的管理下,長期演進模組114和/或藍牙模組116可在方塊207配置其長期演進和/或藍牙元件,從而避免它們之間的裝置內共存干擾。
圖3根據不同的實施例示意地說明一由增強節點B102所運用,用來處理一裝置內共存干擾的方法。在不同實施例中,在方塊301,增強節點B102之長期演進模組132或者其他裝置可從使用者端設備101接收裝置內共存讀數。接著,在方塊302,增強節點B102之裝置內共存管理模組134或者其他裝置可判定由裝置內共存讀數所表明的子訊框圖型是否為可接受的。反應於子訊框圖型為可接受的,增強節點B102之裝置內共存管理模組134或者其他裝置可由此在方塊304基於子訊框圖型產生非連續接收模式配置資訊。在其他情況中,增強節點B102可在方塊303依之產生非連續接收模式配置資訊前修改子訊框圖型。對具有多於一子訊框圖型的裝置內共存讀數,增強節點B102可選擇其中一個子訊框圖型並如上述產生非連續接收模式配置。
非連續接收模式配置資訊可表明一與不同通訊協定場景,如長期演進技術以及藍牙協定場景相關的非連續接收模式圖型。舉例來說,非連續接收模式配置資訊可包含,並無限定為,非連續接收模式周期參數如一長非連續接收模式周期起始偏移、一短非連續接收模式周期、一非連續接收模式不活動計時值、一非連續接收模式重傳計
時值、和/或其他者。
在方塊305,增強節點B102之長期演進模組132可將非連續接收模式配置資訊傳送至使用者端設備101,其利用非連續接收模式配置資訊來配置收發器,例如長期演進模組114和/或藍牙模組116,從而解決它們之間的裝置內共存干擾。
圖4根據不同的實施例示意地說明一示例系統400。系統400可包含一或多個處理器404、耦接於至少一處理器404的系統控制邏輯408、耦接於系統控制邏輯408的系統記憶體412、耦接於系統控制邏輯408的非依電性記憶體(NVM)/儲存器416、以及耦接於系統控制邏輯408的一網路介面420。
處理器404可包括一或多個單核心或多核心的處理器。處理器404可包括通用處理器以及專用處理器(例如,圖形處理器、應用處理器、基頻處理器等)的任意組合。在一系統400實作使用者端設備101的實施例中,處理器404可被配置成根據不同的實施例來執行如圖1與2的實施例。在一系統400實作增強節點B102的實施例中,處理器404可被配置成來執行如圖1與3的實施例。
對一實施例的系統控制邏輯408可包括任意適當的介面控制器來提供予任意與至少一處理器404和/或任意與系統控制邏輯408通訊之適當裝置或部件的適當介面。
對一實施例的系統控制邏輯408可包括一或多個記憶體控制器以提供一介面予系統記憶體412。系統記憶體
412可被用來載入及儲存舉例來說,予系統400的資料和/或指令。對一實施例的系統記憶體412可包括任意適當的依電性記憶體,舉例來說,如適當的動態隨機存取記憶體(DRAM)。
非依電性記憶體/儲存器416可包括一或多個有形、非暫態電腦可讀的媒體,舉例來說,用來儲存資料和/或指令。非依電性記憶體/儲存器416可包括任意適當的非依電性記憶體,舉例來說,如快閃記憶體,和/或可包括任意適當的非依電性儲存裝置,舉例來說,如一或多個硬式磁碟機(HDDs)、一或多個光碟(CD)機、和/或一或多個數位光碟(DVD)機。
非依電性記憶體/儲存器416可包括一儲存資源其實體上為一系統400安裝於其上的裝置的一部份,或者其可被裝置存取但不必定為裝置的一部份。舉例來說,非依電性記憶體/儲存器416可被藉由網路介面420被一網路存取。
系統記憶體412以及非依電性記憶體/儲存器416可各自包括,特別是,時間性以及持續性的指令424之副本。指令424可包括指令其被至少一處理器404執行時,可導致該系統400實作如參照圖2及3所述的一或兩方法。在不同實施例中,指令424,或其硬體、韌體、和/或軟體部件,可額外地/可替代性地被置於系統控制邏輯408、網路介面420、和/或處理器404中。
網路介面420可具有一收發器(例如,圖1的長期
演進模組114和/或藍牙模組116)來提供一無線電介面予系統400以經由一或多個網路通訊和/或與任意其他適當的裝置通訊。在不同實施例中,長期演進模組114或藍牙模組116可被與系統400的其他部件整合。舉例來說,長期演進模組114或藍牙模組116可包括處理器404的其中一個、系統記憶體412的記憶體、以及非依電性記憶體/儲存器416中的非依電性記憶體/儲存器416。網路介面420可包括任意適當的硬體和/或韌體。網路介面420可包括複數個天線(例如,圖1的天線112)以提供一多輸入多輸出的無線電介面。一實施例中的網路介面420可包括,舉例來說,一網路連接器、一無線網路連接器、一電話數據機、和/或一無線數據機。
對一實施例,處理器404的至少一個可被與邏輯一併封裝予系統控制邏輯408的一或多個控制器。對一實施例,處理器404的至少一個可被與邏輯一併封裝予系統控制邏輯408的一或多個控制器以形成一系統級封裝(SiP)。對一實施例,處理器404的至少一個可被與邏輯一併整合於一相同的晶片上予系統控制邏輯408的一或多個控制器。對一實施例,處理器404的至少一個可被與邏輯一併整合於一相同的晶片上予系統控制邏輯408的一或多個控制器以形成一系統單晶片(SoC)。
系統400可進一步包括輸入/輸出(I/O)裝置432。輸入/輸出裝置432可包括被設計成讓使用者能與系統400互動、周邊部件介面被設計成使周邊部件能與系統400互動、和/或感測器被設計成來判定環境狀況和/或與系統400有關
的位置資訊。
在不同實施例中,使用者介面可包括,但不限於,一顯示器(例如,一液晶顯示器、一觸控式螢幕顯示器等)、一揚聲器、一麥克風、一或多個攝影機(例如,一相機和/或一錄影機)、一閃光燈(例如,一發光二極體閃燈)、以及一鍵盤。
在不同實施例中,周邊部件介面可包括,但不限於,一非依電性記憶體埠、一音頻插孔、以及一電源供應介面。
在不同實施例中,感測器可包括,但不限於,一陀螺儀感測器、一加速度計、一鄰近感測器、一環境光感測器、以及一定位單元。定位單元也可為網路介面420的一部份或者與網路介面420互動以與一定位網路,例如一全球定位系統(GPS)衛星的部件通訊。
在不同實施例中,系統400可為一行動式計算裝置如,但不限於,一膝上型計算裝置、一平板計算裝置、一輕省筆電、一行動電話等。在不同實施例中,系統400可具有較多或較少的部件,和/或不同的結構。
此揭露可包括以下揭露之不同範例實施例。
在示例實施例1中,一種由一使用者端設備(UE)所運用的方法可包含:偵測在於一第一協定上操作的一第一通訊模組與於一第二協定上操作的一第二通訊模組之間的一裝置內共存(IDC)干擾;產生一裝置內共存讀數,其具有一包含四個字元的字串,其中四字元對應於一包含四個
子訊框的子訊框圖型,字串中一字元的一數值表明一增強節點B(eNB)是否被要求不得使用子訊框圖型中四個子訊框的其中一子訊框;以及將裝置內共存讀數經由一無線通訊網路傳送至增強節點B。
在示例實施例2中,根據示例實施例1的裝置內共存讀數可為反應一該裝置內共存干擾無法被使用者端設備所解決且一網路干預被需要的判定而被產生。
在示例實施例3中,根據示例實施例1-2任一者的字元的數值可更表明增強節點B是否被要求不得使用一或多個滿足與子訊框間一混合式自動重送請求(HARQ)關係的連串子訊框。
在示例實施例4中,根據示例實施例1-3任一者的裝置內共存讀數可為經由定義子訊框圖型是從一滿足系統訊框編號(SFN)mod2=0的無線電子訊框開始而被產生。
在示例實施例5中,根據示例實施例1-4任一者的裝置內共存讀數可為經由定義子訊框圖型是從一滿足系統訊框編號(SFN)mod2=1的無線電子訊框開始而被產生。
在示例實施例6中,根據示例實施例1-5任一者的方法可進一步包含從增強節點B接收一非連續接收模式(DRX)配置資訊,其是基於裝置內共存讀數而被產生;以及基於該非連續接收模式配置資訊來控制一非連續接收模式操作以解決該裝置內共存干擾。
在示例實施例7中,根據示例實施例1-6任一者的使用者端設備可為一具有一觸控螢幕的行動裝置。
在示例實施例8中,根據示例實施例1-7任一者的使用者端設備可遵守一長期演進技術(LTE)頻分雙工(FDD)規格。
在示例實施例9中,一種由一增強節點B(eNB)所運用的方法可包含:從一使用者端設備(UE)接收一裝置內共存(IDC)讀數,其中該裝置內共存讀數具有一包含四個字元的字串,其中該字串對應於一包含四個子訊框的子訊框圖型,且該字串中一字元的一數值表明一增強節點B(eNB)是否被要求不得使用該子訊框圖型中該四個子訊框的其中一子訊框;反應一該子訊框圖型為可接受的之判定,基於該裝置內共存讀數產生一非連續接收模式(DRX)配置資訊;以及將該非連續接收模式配置資訊經由一無線通訊網路傳送至該使用者端設備。
在示例實施例10中,根據示例實施例9的字元的數值可更表明增強節點B是否被要求不得使用一或多個滿足與子訊框間一混合式自動重送請求(HARQ)關係的連串子訊框。
在示例實施例11中,根據示例實施例9-10任一者的裝置內共存讀數可為經由定義子訊框圖型是從一滿足系統訊框編號(SFN)mod2=0的無線電子訊框開始而被產生。
在示例實施例12中,根據示例實施例9-11任一者的裝置內共存讀數可為經由定義子訊框圖型是從一滿足系統訊框編號(SFN)mod2=1的無線電子訊框開始而被產生。
在示例實施例13中,根據示例實施例9-12任一者
的無線網路無線通訊網路可遵守一長期演進技術(LTE)頻分雙工(FDD)規格。
雖然特定的實施例已經在本文為了詳細說明的用途被說明並描述,許多被計算來達成相同目的之替代的和/或等效的實施例或者實作例可被用來替換所示以及所述的實施例而不偏離本揭露書的範圍。因此,明白意圖的是本文所描述的實施例僅被請求項以及其等效範圍所限定。
100‧‧‧系統
101‧‧‧使用者端設備
102‧‧‧增強節點B
103、105‧‧‧無線網路
104‧‧‧裝置
112‧‧‧天線
114‧‧‧長期演進模組
116‧‧‧藍牙模組
118‧‧‧裝置內共存模組
122‧‧‧裝置內共存干擾偵測模組
124‧‧‧裝置內共存干擾管理模組
132‧‧‧長期演進模組
134‧‧‧裝置內共存管理模組
Claims (30)
- 一種由一使用者端設備(UE)所運用的方法,包含以下步驟:偵測在於一第一協定上操作的一第一通訊模組與於一第二協定上操作的一第二通訊模組之間的一裝置內共存(IDC)干擾;產生一IDC讀數,其具有一包含四個字元的字串,其中該四字元對應於一包含四個子訊框的子訊框圖型,且該字串中一字元的一數值表明一增強節點B(eNB)是否被要求不得使用該子訊框圖型中該四個子訊框的其中一子訊框;以及將該IDC讀數經由一無線通訊網路傳送至該增強節點B。
- 如請求項1的方法,其中該IDC讀數是反應該IDC干擾無法被該使用者端設備所解決且一網路干預被需要的一判定而被產生。
- 如請求項1的方法,其中該字元的該數值更表明該增強節點B是否被要求不得使用滿足與該子訊框間一混合式自動重送請求(HARQ)關係的一或多個連串子訊框。
- 如請求項1的方法,其中該IDC讀數是經由定義該子訊框圖型是從一滿足系統訊框編號(SFN)mod2=0的無線電子訊框開始而被產生。
- 如請求項1的方法,其中該IDC讀數是經由定義該子訊 框圖型是從滿足系統訊框編號(SFN)mod2=1的一無線電子訊框開始而被產生。
- 如請求項1的方法,更包含以下步驟:從該增強節點B接收一非連續接收模式(DRX)配置資訊,其是基於該IDC讀數而被產生;以及基於該非連續接收模式配置資訊來控制一非連續接收模式操作以解決該IDC干擾。
- 如請求項1的方法,其中該使用者端設備是一具有一觸控螢幕的行動裝置。
- 如請求項1的方法,其中該無線通訊網路遵守一長期演進技術(LTE)頻分雙工(FDD)規格。
- 一種由一使用者端設備(UE)所運用的設備,包含:用來在一第一協定上操作的一第一通訊模組;用來在一第二協定上操作的一第二通訊模組;一裝置內共存(IDC)干擾偵測模組,用來偵測在該第一通訊模組與該第二通訊模組之間的一IDC干擾;以及一IDC管理模組,用來產生產生一IDC讀數,其具有包含四個字元的一字串,其中該四字元對應於包含四個子訊框的一子訊框圖型,且該字串中一字元的一數值表明一增強節點B(eNB)是否被要求不得使用該子訊框圖型中該四個子訊框的其中一子訊框;以及其中該第一通訊模組更用來將該IDC讀數經由一無線通訊網路傳送至該增強節點B。
- 如請求項9的設備,其中該IDC讀數是反應該IDC干擾無法被該UE所解決且一網路干預被需要的一判定而被產生。
- 如請求項9的設備,其中該字元的該數值更表明該增強節點B是否被要求不得使用滿足與該子訊框間一混合式自動重送請求(HARQ)關係的一或多個連串子訊框。
- 如請求項9的設備,其中該IDC讀數是經由定義該子訊框圖型是從一滿足系統訊框編號(SFN)mod2=0的無線電子訊框開始而被產生。
- 如請求項9的設備,其中該IDC讀數是經由定義該子訊框圖型是從一滿足系統訊框編號(SFN)mod2=1的無線電子訊框開始而被產生。
- 如請求項9的設備,其中該第一通訊模組更用來從該增強節點B接收一非連續接收模式(DRX)配置資訊,其是基於該IDC讀數而被產生;且該IDC管理模組更用來基於該DRX配置資訊來控制一DRX操作以解決該IDC干擾。
- 如請求項9的設備,其中該UE是一具有一觸控螢幕的行動裝置。
- 如請求項9的設備,其中該無線通訊網路遵守一長期演進技術(LTE)頻分雙工(FDD)規格。
- 一或多個電腦可讀媒體,具有儲存於其上的指令,當該等指令被一或多個處理器執行時,致使一使用者端 設備(UE)來施行如請求項1-8任一項所述之方法。
- 一種用於處理裝置內共存干擾之設備,其包含:一或多個處理器;以及一或多個電腦可讀媒體,具有儲存於其上的指令,當該等指令被一或多個處理器執行時,致使該設備來施行如請求項1-8任一項所述之方法。
- 一種由一增強節點B(eNB)所運用的方法,包含:從一使用者端設備(UE)接收一裝置內共存(IDC)讀數,其中該IDC讀數具有包含四個字元的一字串,其中該字串對應於包含四個子訊框的一子訊框圖型,且該字串中一字元的一數值表明一增強節點B(eNB)是否被要求不得使用該子訊框圖型中該四個子訊框的其中一子訊框;反應一該子訊框圖型為可接受的之判定,基於該IDC讀數產生一非連續接收模式(DRX)配置資訊;以及將該DRX配置資訊經由一無線通訊網路傳送至該UE。
- 如請求項19的方法,其中該字元的該數值更表明該增強節點B是否被要求不得使用滿足與該子訊框間一混合式自動重送請求(HARQ)關係的一或多個連串子訊框。
- 如請求項19的方法,其中該IDC讀數是經由定義該子訊框圖型是從一滿足系統訊框編號(SFN)mod2=0的無線電子訊框開始而被產生。
- 如請求項19的方法,其中該IDC讀數是經由定義該子訊框圖型是從一滿足系統訊框編號(SFN)mod2=1的無線電子訊框開始而被產生。
- 如請求項19的方法,其中該無線通訊網路遵守一長期演進技術(LTE)頻分雙工(FDD)規格。
- 一種由一增強節點B(eNB)所運用的設備,包含:一通訊模組,用以從一使用者端設備(UE)接收一裝置內共存(IDC)讀數,其中該IDC讀數具有包含四個字元的一字串,其中該字串對應於包含四個子訊框的一子訊框圖型,且該字串中一字元的一數值表明該增強節點B是否被要求不得使用該子訊框圖型中該四個子訊框的其中一子訊框;一IDC管理模組,反應一該子訊框圖型為可接受的之判定,基於該IDC讀數產生一非連續接收模式(DRX)配置資訊;以及其中該通訊模組更用以將該DRX配置資訊經由一無線通訊網路傳送至該UE。
- 如請求項24的設備,其中該字元的該數值更表明該增強節點B是否被要求不得使用滿足與該子訊框間一混合式自動重送請求(HARQ)關係的一或多個連串子訊框。
- 如請求項24的設備,其中該IDC讀數是經由定義該子訊框圖型是從滿足系統訊框編號(SFN)mod2=0的一無線電子訊框開始而被產生。
- 如請求項24的設備,其中該IDC讀數是經由定義該子訊框圖型是從滿足系統訊框編號(SFN)mod2=1的一無線電子訊框開始而被產生。
- 如請求項24的設備,其中該無線通訊網路遵守一長期演進技術(LTE)頻分雙工(FDD)規格。
- 一種具有指令儲存於其上的一或多個電腦可讀媒體,當該等指令被一或多個處理器執行時,致使一增強節點B(eNB)來施行如請求項19-23任一項所述之方法。
- 一種用於處理裝置內共存干擾之設備,其包含:一或多個處理器;以及一或多個電腦可讀媒體,具有儲存於其上的指令,當該等指令被一或多個處理器執行時,致使該設備來施行如請求項19-23任一項所述之方法。
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