TW201507534A - 網路協助的lte通道獲取 - Google Patents
網路協助的lte通道獲取 Download PDFInfo
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- TW201507534A TW201507534A TW103112287A TW103112287A TW201507534A TW 201507534 A TW201507534 A TW 201507534A TW 103112287 A TW103112287 A TW 103112287A TW 103112287 A TW103112287 A TW 103112287A TW 201507534 A TW201507534 A TW 201507534A
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- wlan
- lte
- layer cell
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- 210000004027 cell Anatomy 0.000 claims description 206
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Classifications
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- Y02D30/00—Reducing energy consumption in communication networks
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Abstract
在一實施例中,本發明提供IRP管理器,組構以查詢至少一eNB,而決定與該至少一eNB相關聯之一或多個訊胞涵蓋區域相關聯的實體層訊胞識別及/或LTE頻帶資訊,且決定用於與該至少一eNB相關聯的至少一訊胞之最佳的實體層訊胞識別及LTE頻帶。最佳的實體層訊胞識別及/或LTE頻帶可根據例如,網路拓樸統計(例如,目前之訊胞涵蓋區域,等等)、話務負載、等等。最佳的實體層訊胞識別及/或LTE頻帶資訊可在至少一UE落在WLAN AP的涵蓋區域之外面的事件中,由WLAN AP的涵蓋區域內之至少一UE所使用,以提供訊胞連接。
Description
本發明有關用於使用者裝備之網路協助的LTE通道獲取,且更特別地,有關用於無線電局部區域網路(WLAN)連接的使用者裝備之網路協助的LTE通道獲取。
行動資料係計劃要自2012年至2017年以百分之66的估計之CAGR迅速成長。透過新的基地台之部署或高等技術升級以縮放網路容量並非跟得上行動資料需求之可實行的選擇。因為Wi-Fi已在智慧型手機、平板電腦、及筆記型電腦上變成標準的特性,所以卸載行動資料至miWi-Fi正幫助業者解決他們現正面對的資料成長。依據2013年3月中之GSMA無線電情報報告,Wi-Fi占行動之無線電資料話務的幾乎三分之二,且在年底,業者具有三百八十三萬個Wi-Fi存取點於適當位置處。該等數目正開始反映出在高度先進之市場中所見到的Wi-Fi趨勢,例如,在其中Wi-Fi卸載係常見的美國、南韓、及日本。日本的KDDI係在本月中以其行動資料話務的一半被卸載至其
Wi-Fi網路為目標,而自2012年的年底之43%提高。另一方面,在全美國操作32000個其擁有之熱點的AT&T之最近所公佈的統計顯示出,在2012年中,其Wi-Fi網路之連接的年增率超過一倍。當智慧型手機或其他的行動裝置係經由Wi-Fi而被漸增地連接至網際網路時,其變成較不企望保持智慧型手機的LTE連接主動,因為此將典型地快速消耗電池及浪費LTE無線電資源。然而,若將LTE無線電關閉時,則此行動裝置會典型地花費長的時間以被重新連接至LTE網路。
100‧‧‧無線電網路
102‧‧‧訊胞A
104‧‧‧訊胞B
108‧‧‧WLAN AP(無線電局部區域網路存取點)
110‧‧‧UE(使用者裝備)
200‧‧‧無線電網路系統
202‧‧‧網路管理器(NM)
204‧‧‧IRP管理器
206‧‧‧3GPP定域管理器
208‧‧‧3GPP元件管理器
210‧‧‧WLAN元件管理器
212‧‧‧IRP代理器
214‧‧‧映像代理器
216‧‧‧WLAN存取控制器
218A,...,218B‧‧‧3GPP eNB
220A,...,220B‧‧‧WLAN AP
222‧‧‧類型2介面
224‧‧‧類型1介面
300‧‧‧IRP管理器方塊圖
302‧‧‧查詢邏輯
304‧‧‧WLAN AP控制邏輯
306‧‧‧eNB/WLAN AP關係邏輯
400‧‧‧WLAN AP方塊圖
402‧‧‧802.11訊框邏輯
404‧‧‧LTE通道獲取元件廣播邏輯
500‧‧‧UE方塊圖
502‧‧‧LTE通道獲取元件訊框邏輯
504‧‧‧WLAN控制器
506‧‧‧LTE控制器
508‧‧‧LTE/WLAN AP決定邏輯
600‧‧‧LTE通道獲取元件訊框
602‧‧‧元件ID欄
604‧‧‧長度欄
606‧‧‧LTE頻帶欄
608‧‧‧實體(PHY)層訊胞ID欄
700‧‧‧報告操作
702-712‧‧‧操作
800,900,1000‧‧‧流程圖
802-806,902-906,1002-1010‧‧‧操作
當詳細說明進行時,且一旦參閱其中相同符號描繪相同部件的圖式,則所主張專利之標的物的實施例之特性和優點將變成明顯,其中:第1圖描繪依據本發明一實例實施例之簡化的無線電網路;第2圖描繪依據本發明之種種實施例的實例無線電網路系統;第3圖描繪依據本發明一實施例之實例IRP管理器的方塊圖;第4圖描繪依據本發明一實施例之實例WLAN AP的方塊圖;第5圖描繪依據本發明一實施例之實例UE的方塊圖;
第6圖描繪依據一實例實施例之LTE通道獲取元件訊框;第7圖描繪依據一實例實施例之用於實體層訊胞ID及LTE頻帶資訊的報告操作;第8圖描繪符合本發明之實例實施例的操作流程圖;第9圖描繪符合本發明之另一實例實施例的操作流程圖;以及第10圖描繪符合本發明之另一實例實施例的操作流程圖。
雖然詳細說明將參照描繪性實施例而進行,但其許多選擇例、修正例、及變化例將呈明顯於熟習本項技藝之該等人士。
大致地,本發明提供用以當UE移動超出WLAN涵蓋時,自無線電局部區域網路(WLAN)連接有效率地躍遷至LTE/LTE-A網路訊胞連接之裝置、系統、及方法。在一實施例中,本發明提供IRP管理器,組構以查詢至少一eNB,而決定與該至少一eNB相關聯之一或多個訊胞涵蓋區域相關聯的實體層訊胞識別及/或LTE頻帶資訊,且決定最佳的實體層訊胞識別及LTE頻帶,用於與該至少一eNB相關聯的至少一UE。最佳的實體層訊胞識別及/或LTE頻帶可根據例如,網路拓樸統計(例如,目前的訊胞涵蓋區域、等等)、話務負載、等等。用於至少一UE之
最佳的實體層訊胞識別及/或LTE頻帶資訊可被傳送至WLAN存取點(AP)。在另一實施例中,本發明提供WLAN AP,其係組構以接收來自IRP管理器之最佳的實體層訊胞識別及/或LTE頻帶資訊,且使該最佳的實體層訊胞識別及/或LTE頻帶資訊格式化成為無線電訊框(例如,802.11可相容訊框格式)。WLAN AP亦被組構以週期性地廣播包含最佳的實體層訊胞識別及/或LTE頻帶資訊的無線電訊框至WLAN AP涵蓋區域內的至少一UE。在其他實施例中,係提供被組構以接收包含最佳的實體層訊胞識別及/或LTE頻帶資訊之無線電訊框的UE。若UE移動超出WLAN AP涵蓋區域時,UE係組構以致能LTE功能,並使用最佳的實體層訊胞識別及/或LTE頻帶資訊以有效率地選擇LTE/LTE-A網路訊胞且使同步於該LTE/LTE-A網路訊胞。
第1圖描繪依據本發明一實例實施例之簡化的無線電網路100。無線電網路100包含訊胞A 102及訊胞B 104。訊胞A 102的涵蓋區域係大於訊胞B 104,且與訊胞B 104的涵蓋重疊。網路100亦包含與至少一使用者裝備(UE)110通訊的WLAN AP 108。UE可係任何類型的行動裝置或平台,例如,智慧型手機、平板電腦、膝上型個人電腦、超級筆電、等等。WLAN AP 108的涵蓋區域(點線)係在訊胞B 104(及訊胞A 102)的涵蓋區域內。當UE 110移動超出WLAN AP 108的涵蓋區域時,將做成有關最佳訊胞連接的決定(於此實例中,在訊胞A或訊胞B之
間),如下文將予以更詳細敍述地。雖然此係用於描繪目的之簡化的實例,但將被理解的是,在實用上,任何組態之各式各樣類型的eNB、UE、及WLAN AP可予以部署,且可提供延伸至許多區域、地區、或扇區的涵蓋。如此處所使用之無線電訊胞網路可遵循以第三代合作夥伴計劃(3GPP)長期演進(LTE)及/或LTE-升級版(LTE-A)為基之無線電網路標準,包含該標準之目前的、以前的、及/或未來的版本,或可與之相容。如此處所使用之WLAN可遵循IEEE 802.11無線電標準(例如,IEEE802.11bj、802.11n、等等),包含該標準之目前的、以前的、及/或未來的版本,或可與之相容。
第2圖描繪依據本發明之種種實施例的實例無線電網路系統圖200。無線電網路系統200包含複數個硬體裝置、硬體平台,以及相關聯的信令、功能、軟體、及定義,其通常可遵循3GPP標準,或可與之相容。如此處所使用之對硬體平台及/或軟體模組(例如,UE、eNodeB、eNB、NB、EM、NM、IRP、AC、等等)以及相關聯的信令及功能之引用通常可由上述的3GPP標準及/或其衍生標準所界定。
網路管理器(NM)202係顯示包含IRP管理器204,其亦係已知為操作支援系統(OSS)。典型地,IRP管理器或OSS係組構以提供並促進網路業者或提供者網路支援功能的電腦系統及/或軟體應用。該等支援功能可包含組態、性能監測及缺設偵測、以及其他操作,如下文將予以更詳
細敘述地。IRP管理器204可被組構以透過其中可包含3GPP元件管理器208之3GPP定域管理器206,而與3GPP eNB 218A,...,218B通訊。3GPP定域管理器206可被組構以提供元件及定域管理功能二者,以供子網路之用,而3GPP元件管理器208可被組構以提供一組終端使用者功能,以供例如,3GPP eNB 106之一組相關聯類型之網路元件的管理之用。
IRP管理器204亦可被組構以透過WLAN元件管理器210,而與WLAN AP 108通訊。WLAN元件管理器210可被組構以提供元件及定域管理功能二者,以供子網路之用,以及一組終端使用者功能,以供例如,WLAN AP 220A,...,220B之一組相關聯類型之網路元件的管理之用。雖然IRP管理器204係在其他實施例中被描繪為與NM 202相關聯,但IRP管理器204可以與網路200的其他系統、子系統、或組件相關聯,例如,IRP管理器204可以以3GPP定域管理器206、3GPP元件管理器208、WLAN元件管理器210、等等,予以部署。
通常,eNB 218A,...,218B係各自組構以提供訊胞涵蓋區域(未顯示於此圖中)。在若干實施例中,一或多個eNB係可操作以覆蓋單一訊胞區域,而在其他實施例中,至少一eNB係可操作以覆蓋多重訊胞或扇區,且在其他實施例中,至少一訊胞可被分隔,以致使多重eNB覆蓋該訊胞。雖然此係用於描繪目的之簡化的實例,但將被理解的是,在實用上,任何組態之各式各樣類型的eNB、
UE、及WLAN AP可予以部署,且可提供延伸至許多區域、地區、或扇區的涵蓋。使用者裝備(UE,未顯示於此圖中)可被典型地組構以傳送語音及資料話務至eNB 218A,...,218B以及來自eNB 218A,...,218B的語音及資料話務。NM202可被組構以在網路200中與該等eNB通訊,而監測PLMN系統行為性能,且確保系統操作之增加的效率及可靠度,如下文將予以更詳細敘述地。
NM202、DM206、及EM210可包含介面電路以致能通訊。在一實例中,該介面可包含類型2介面222。類型2介面222可由上述之3GPP標準及/或使用者界定的(例如,專有的)介面協定所界定。DM206、EM210、eNB 218A,...,218B、WLAN AP 220A,...,220B亦可包含介面電路以在其間致能通訊。在一實例中,該介面可包含類型1介面224。類型1介面224可由上述之3GPP標準及/或使用者界定的(例如,專有的)介面協定所界定。EM210亦可被組構以在類型1介面224與類型2介面222之間提供信息轉譯。WLAN EM210可包含IRP代理器212,其係組構以在IRP管理器204與WLAN EM 210之間致能通訊。WLAN EM 210亦可包含WLAN存取控制器216,其係組構以在EM210與WLAN AP 220A,...,220B之間致能通訊。映像代理器214係組構以在WLAN AP 220A,...,220B的通訊協定與IRP管理器204的通訊協定之間映像信息。
第3圖描繪依據本發明一實施例之實例IRP管理器的
方塊圖300。在此實例中,IRP管理器的204係大致地組構以查詢至少一eNB,而決定與該至少一eNB相關聯之一或多個訊胞涵蓋區域相關聯的實體層訊胞識別及/或LTE頻帶資訊,且決定與該至少一eNB相關聯之最佳的實體層訊胞識別及LTE頻帶。該IRP管理器204包含查詢邏輯302、WLAN AP控制邏輯304、及eNB/WLAN AP關係邏輯306。查詢邏輯係組構以查詢至少一eNB,而檢索實體層訊胞識別及/或LTE頻帶資訊X1、X2,...Xn。
該查詢邏輯302亦係組構以在特定UE移動到WLAN AP涵蓋區域之外面的事件中,自X1、X2,...Xn中決定最佳的或“最好的”實體層訊胞識別及/或LTE頻帶,以供訊胞使用。最佳的實體層訊胞識別及/或LTE頻帶可根據例如,網路拓樸統計(例如,目前之訊胞涵蓋區域、鄰近訊胞之涵蓋區域、等等)、話務負載、訊胞中斷或訊胞服務之品質、與UE/eNB相關聯之服務品質(QoS)等級、使用者優先序等級、等等而定。WLAN AP控制邏輯304係組構以產生包含最佳的實體層訊胞識別及/或LTE頻帶資訊的控制訊框用於特定訊胞,標記為第3圖中的X。
WLAN AP控制邏輯304亦係組構以傳送X到至少一WLAN AP。eNB/WLAN AP關係邏輯306係組構以決定至少一eNB與至少一WLAN AP之間的涵蓋關係。請再參閱第1圖做為實例,eNB/WLAN AP關係邏輯306係組構以決定WLAN AP 108由與訊胞B相關聯的eNB及與訊胞A相關聯的eNB所覆蓋(例如,訊胞A及B的涵蓋區域覆蓋
WLAN AP 108的涵蓋區域,至少部分地。)此資訊可由查詢邏輯302所使用,以在特定UE移動到WLAN AP涵蓋區域之外面的事件中,決定最佳的實體層訊胞識別及/或LTE頻帶,以供訊胞使用。
第4圖描繪依據本發明一實施例之實例WLAN AP的方塊圖400。在此實例中,WLAN AP 220係大致地組構以接收來自IRP管理器之最佳的實體層訊胞識別及/或LTE頻帶資訊(X),且使該最佳的實體層訊胞識別及/或LTE頻帶資訊格式化成為無線電訊框(例如,802.11可相容的訊框格式)。WLAN AP 220亦係大致地組構以週期性地廣播包含最佳的實體層訊胞識別及/或LTE頻帶資訊的無線電訊框至該WLAN AP之涵蓋區域內的至少一UE。此實例之WLAN AP 220包含802.11訊框邏輯402,其係組構以使實體層訊胞識別及/或LTE頻帶資訊格式化成為無線電訊框格式之可相容者,例如,802.11可相容的訊框格式。
WLAN AP 220亦包含LTE通道獲取元件廣播邏輯404,其係組構以週期性地廣播包含實體層訊胞識別及/或LTE頻帶資訊的無線電訊框至該WLAN AP 220之涵蓋區域內的至少一UE。此處,包含實體層訊胞識別的無線電訊框係稱為“LTE通道獲取元件”。如就此處所使用之“週期性地”用語而言,其係大致地界定為頻率,其中LTE通道獲取元件係藉由邏輯404而在該頻率中被廣播到至少一UE。其中邏輯404廣播LTE通道獲取元件之頻率可根據例如,使用者界定之值、網路啟發式(例如,UE花費在
WLAN AP之涵蓋區域內的平均時間、特定UE的歷史時間週期、等等)、網路拓樸統計(例如,目前之訊胞涵蓋區域、等等)、在WLAN AP涵蓋及/或訊胞涵蓋中的改變、話務負載、與UE/eNB相關聯之服務品質(QoS)等級、使用者優先序等級、等等而定。
第5圖描繪依據本發明一實施例之實例UE的方塊圖500。在此實例中,UE110係大致地組構以在該UE失去WLAN AP之涵蓋的事件中(例如,UE移動、WLAN AP喪失連接性、等等),使用LTE通道獲取元件以連接至LTE訊胞。UE 110包含LTE通道獲取元件訊框邏輯502,其係組構以剖析所接收自WLAN AP之LTE通道元件訊框,而決定與目標訊框相關聯的實體層訊胞識別及/或LTE頻帶資訊。UE 110亦包含WLAN控制器504,其係組構以提供與WLAN AP之WLAN通訊。UE 110亦包含LTE控制器506,其係組構以提供與LTE網路之LTE訊胞通訊。若UE 110移動到WLAN AP的無線電涵蓋區域之外面時,UE 110可使用LTE通道獲取元件訊框以有效率地連接至LTE訊胞。在此,“有效率地”之用語意指UE可避免其他的訊胞連接程序,諸如可能耗時且/或需要過多的功率需求之掃描LTE通道及決定那一個通道可用。此外,LTE通道獲取元件可使用UE能保持LTE天線及相關聯的電路在關閉或低功率狀態中,且同時,在WLAN AP的涵蓋區域之內,而藉以保存UE的功率。請再參閱第1圖做為實例,若UE 100移動到WLAN AP 108的涵蓋區域
之外面,但仍保持在訊胞B104及訊胞A102的涵蓋區域之內時,則LTE通道獲取元件通知UE要使用那一個訊胞(訊胞A或訊胞B)以獲得LTE連接性。如上述,IRP管理器204係組構以在訊胞A及訊胞B中決定那一個訊胞係用於LET與UE之連接性的最佳訊胞。
在若干實施例中,UE 110亦可包含LTE/WLAN AP決定邏輯508,其係組構以決定LTE與WLAN AP之間的最佳連接。例如,LTE/WLAN AP決定邏輯508可被組構以如PHY層訊胞ID及LTE頻帶資訊所指示地掃描LTE通道,且可依據信號強度、輸送量、等等,而在LTE與WLAN AP之間決定那一個連接更有利。在一實例中,LTE/WLAN AP決定邏輯508係組構以比較LTE通道的RSRP(參考信號接收功率)及RSRQ(參考信號接收品質)與WLAN AP的RSRP及RSRQ,而決定LTE與WLAN AP之間的最佳連接。
第6圖描繪依據一實例實施例的LTE通道獲取元件訊框600。LTE通道獲取元件訊框600係802.11可相容訊框,其包含複數個欄以指明與3GPP可相容訊胞相關聯的某一資訊。LTE通道獲取元件訊框600包含元件ID欄602,其可由802.11標準所界定。在此實例中,元件ID欄602係一位元組欄。LTE通道獲取元件訊框600亦包含長度欄604,其亦可由802.11標準所界定。在此實例中,元件ID欄604係一位元組欄。LTE通道獲取元件訊框600亦包含LTE頻帶欄606,其可包含一或多個位元以識
別最佳的LTE頻帶(例如,自44個LTE頻帶中)。該LTE頻帶欄606包含有關與用於訊胞之FDD(分頻雙工)操作狀態的上行鏈路(UL)及下行鏈路(DL)通道相關聯之頻率及帶寬,及/或用於訊胞之TDD(分時雙工)操作狀態之頻率及帶寬的資訊。在此實例中,LTE頻帶欄606係一位元組欄。LTE通道獲取元件訊框600亦包含實體(PHY)層訊胞ID欄608,其可包含對應一或多個獨特的PHY層訊胞本體(例如,504個獨特的PHY層訊胞本體,例如,可由3GPP標準所界定)之一或多個位元。在此實例中,實體(PHY)層訊胞ID欄608係二位元組欄。各PHY層訊胞本體對應可被使用於時槽及訊框同步之特定的下載參考信號。LTE信號係以訊框予以傳送,且各訊框典型地包含複數個時槽。eNB廣播包含訊胞之ID的實體層訊胞ID,且參考信號係由UE所使用,以找尋訊框及時槽的開始(例如,下行鏈路信令同步)。在使DL鏈路同步之後,UE可解碼LTE信號。雖然實例LTE通道獲取元件訊框600係特定用於802.11適用訊框,但在其他實施例中,可使用其他的訊框類型,例如,販售商特定訊框類型、專屬訊框類型、等等。
第7圖描繪依據本發明一實例實施例之用於LTE實體層及頻帶資訊的報告操作700。在操作702中,NM經由3GPP EM而自eNB查詢PHY層訊胞ID及LTE頻帶資訊。在操作704中,3GPP EM轉遞來自NM的查詢至eNB。在操作706中,eNB藉經由3GPP EM以回報HY層
訊胞ID及LTE頻帶資訊至NM,而回應來自NM的查詢。在操作708中,3GPP EM轉遞PHY層訊胞ID及LTE頻帶資訊至NM。在操作710中,經由WLAN EM而決定與至少一eNB相關聯之最佳的PHY層訊胞ID及LTE頻帶,且產生要組構具有最佳的PHY層訊胞ID及LTE頻帶資訊之目標WLAN AP的控制信息用於該目標WLAN AP。在操作712中,WLAN EM轉遞該控制信息至目標WLAN AP。WLAN EM亦可執行控制信息之任何必要的轉譯/映像,而在NM的協定與WLAN AP的協定之間轉譯/映像。
第8圖描繪符合本發明之實例實施例的操作流程圖800。特別地,流程圖800描繪關於實體層訊胞ID及LTE頻帶資訊之IRP管理器的操作。此實施例的操作包含查詢至少一eNB以決定用於該至少一eNB的PHY層訊胞ID及LTE頻帶資訊(802)。操作亦包含決定用於至少一eNB之最佳的PHY層訊胞ID及LTE頻帶(804)。該最佳的實體層訊胞識別及/或LTE頻帶可根據例如,網路拓樸統計(例如,目前之訊胞涵蓋區域、鄰近訊胞之涵蓋區域、等等)、話務負載、訊胞中斷或訊胞服務之品質、與UE/eNB相關聯之服務品質(QoS)等級、使用者優先序等級、等等而定。操作亦包含傳送最佳的PHY層訊胞ID及LTE頻帶資訊至WLAN AP(806)。選擇最佳的PHY層訊胞ID及LTE頻帶資訊可根據複數個eNB之間的負載平衡而定。例如,一或多個eNB可被組構以週期性地報告其話
務負載至IRP管理器。IRP管理器可在具有最少話務之UE失去WLAN AP涵蓋的事件中,選擇eNB之最佳的實體層訊胞識別及/或LTE頻帶以供該UE之用。
第9圖描繪符合本發明之另一實例實施例的操作流程圖900。特別地,流程圖900描繪關於實體層訊胞ID及LTE頻帶資訊之WLAN AP的操作。此實施例的操作包含接收來自IRP管理器之最佳的PHY層訊胞ID及LTE頻帶資訊(902)。該最佳的PHY層訊胞ID及LTE頻帶資訊可由WLAN AP的涵蓋區域中之至少一UE所使用。此實施例的操作亦可包含使該最佳的PHY層訊胞ID及LTE頻帶資訊格式化成為LTE通道獲取元件訊框(904)。LTE通道獲取元件訊框係與WLAN AP可相容的訊框格式,例如,802.11可相容訊框格式。此實施例的操作亦包含週期性地傳送該LTE通道獲取元件訊框至WLAN AP的涵蓋區域內之至少一UE(906)。
第10圖描繪符合本發明之另一實例實施例的操作流程圖1000。特別地,流程圖1000描繪關於實體層訊胞ID及LTE頻帶資訊之UE的操作。此實施例的操作包含接收來自與UE通訊之WLAN AP的LTE通道獲取元件訊框(1002)。該LTE通道獲取元件訊框包含最佳的PHY層訊胞ID及LTE頻帶資訊,用於在UE已移動到相關聯之WLAN AP的涵蓋之外面的事件中由該UE所使用(例如,WLAN AP的信號強度係低於某一臨限值,或該UE失去WLAN AP連接性)。操作亦包含決定UE是否已移動到
WLAN涵蓋的外面(或UE是否已失去WLAN連接性)(1004)。若UE已移動到WLAN涵蓋之外面時,此實施例的操作包含致能該UE的LTE功能(例如,LTE天線及相關聯的電路),且使用LTE通道獲取元件訊框以連接至LTE訊胞(1008)。若UE並未移動到WLAN涵蓋之外面時,操作亦可包含比較在LTE通道獲取元件訊框中所識別之LTE通道的信號強度與WLAN AP信號,以決定那一個信號對於該UE係較佳的(1006)。若WLAN AP的信號強度係大於LTE信號強度時,則操作亦可包含維持LTE功能於使失能的狀態中(例如,關閉或低功率狀態),且持續與WLAN之連接(1010)。若LTE的信號強度係大於WLAN AP時,則操作亦可包含致能UE的LTE功能(例如,LTE天線及相關聯的電路),且使用LTE通道獲取元件訊框以連接至LTE訊胞(1008)。在若干實施例中,例如,UE可被組構以如PHY層訊胞ID及LTE頻帶資訊所指示地掃描LTE通道,且若LTE的RSRP(參考信號接收功率)及RSRQ(參考信號接收品質)係比WLAN AP的RSRP及RSRQ更好時,則可切換至LTE。
在此所敘述之該等操作的實施例可以以包含一或多個儲存裝置的系統,而予以實施,該一或多個儲存裝置具有被個別地或組合地儲存於其上之指令,當藉由一或多個處理器而予以執行時,執行至少一操作。此處,處理器可包含例如,系統CPU(例如,核心處理器)及/或可編程電路。在若干實施例中,於此所敘述之該等操作可被分佈跨越複
數個實體裝置,諸如在若干不同位置處的處理結構。而且,所打算的是,該等方法操作可分別地或以子組合予以執行,且因而,並非該等流程圖之各者的所有操作必須被執行,且本發明明確打算的是,該等操作的所有子組合係如將由熟習本項技術之一般人士所瞭解地致能。
儲存媒體可包含任何類型之有形的儲存媒體,例如,包含磁盤、光碟、小型碟片僅讀記憶體(CD-ROM)、小型碟片可再寫入式(CD-RW)、數位多功能碟片(DVD)、及磁光碟之任何類型的碟片,諸如僅讀記憶體(ROM)、諸如動態及靜態RAM之隨機存取記憶體(RAM)、可拭除可編程之僅讀記憶體(EPROM)、可電性拭除可編程之僅讀記憶體(EEPROM)、快閃記憶體、磁性或光學卡之半導體,或適用以儲存電子指令之任何類型的媒體。
如此處之任一實施例中所使用的“電路”可單一地或任何組合地包含例如,硬線電路、可編程電路、狀態機器電路、及/或儲存由可編程電路所執行之指令的韌體。應用可被實施成為碼或指令,其可在諸如主處理器的可編程電路或其他的可編程電路上被執行。如此處之任一實施例中所使用的“模組”可被實施成為電路、軟體、指令組、碼(例如,源碼、可執行碼、等等)、等等。該電路可被實施成為諸如積體電路晶片之積體電路。
因而,本發明提供用以當UE移動超出WLAN涵蓋時,自無線電局部區域網路(WLAN)連接有效率地躍遷至LTE/LTE-A網路訊胞連接之裝置、方法、系統、及電腦
可讀取儲存媒體。以下實例屬於進一步的實施例。
依據一觀點,提供有一種IRP管理器,其包含查詢邏輯,組構以查詢與該IRP管理器通訊之至少一eNB,而檢索與該至少一eNB相關聯的實體層訊胞識別及/或LTE頻帶資訊;該查詢邏輯亦係組構以決定最佳的實體層訊胞識別及/或LTE頻帶資訊,用於與該至少一eNB相關聯的訊胞;以及WLAN AP控制邏輯,組構以產生控制訊框,而控制與該IRP管理器通訊之WLAN AP,該控制訊框包含用於與該至少一eNB相關聯的訊胞之該最佳的實體層訊胞識別及/或LTE頻帶資訊。
另一實例IRP管理器包含上述該等組件,且進一步包含eNB/WLAN AP關係邏輯,組構以決定該至少一eNB與至少一WLAN AP之間的涵蓋關係,且進一步組構以指示自該至少一eNB卸載至該至少一WLAN AP之話務。
另一實例IRP管理器包含上述該等組件,且其中該最佳的實體層訊胞識別及/或LTE頻帶係根據以下參數的至少一者:複數個eNB之間的負載平衡,網路拓樸統計,目前之訊胞涵蓋區域,一或多個鄰近訊胞之涵蓋區域,訊胞網路話務負載,訊胞中斷,訊胞服務之降低的品質,與UE及/或eNB相關聯之服務品質(QoS)等級,及/或使用者優先序等級。
另一實例IRP管理器包含上述該等組件,且其中該最佳的實體層訊胞識別及/或LTE頻帶資訊係組構以在至少一UE落在該WLAN AP的涵蓋區域之外面的事件中,由
該WLAN AP的涵蓋區域內之至少一UE所使用。
另一實例IRP管理器包含上述該等組件,且其中該查詢邏輯及/或該WLAN AP控制邏輯係與和該至少一eNB通訊的網路管理器(NM)相關聯。
另一實例IRP管理器包含上述該等組件,且其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與該eNB時槽及訊框時序同步的下載參考信號。
另一實例IRP管理器包含上述該等組件,且其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
依據另一觀點,提供有一種方法。該方法可包含查詢至少一eNB以檢索與該至少一eNB相關聯的實體層訊胞識別及/或LTE頻帶資訊;決定最佳的實體層訊胞識別及/或LTE頻帶資訊,用於與該至少一eNB相關聯的訊胞;以及產生控制訊框以控制WLAN AP,該控制訊框包含用於與該至少一eNB相關聯的訊胞之該最佳的實體層訊胞識別及/或LTE頻帶資訊。
另一實例方法包含上述該等操作,且其中該最佳的實體層訊胞識別及/或LTE頻帶係根據以下參數的至少一者:複數個eNB之間的負載平衡,網路拓樸統計,目前之訊胞涵蓋區域,一或多個鄰近訊胞之涵蓋區域,訊胞網
路話務負載,訊胞中斷,訊胞服務之降級的品質,與UE及/或eNB相關聯之服務品質(QoS)等級,及/或使用者優先序等級。
另一實例方法包含上述該等操作,且其中該最佳的實體層訊胞識別及/或LTE頻帶資訊係組構以在至少一UE落在該WLAN AP的涵蓋區域之外面的事件中,由該WLAN AP的涵蓋區域內之至少一UE所使用。
另一實例方法包含上述該等操作,且其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與該eNB時槽及訊框時序同步的下載參考信號。
另一實例方法包含上述該等操作,且其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
依據另一觀點,提供有一種WLAN AP,其包含訊框邏輯,組構以使接收自與該WLAN AP通訊的IRP管理器之最佳的實體層訊胞識別及/或LTE頻帶資訊,格式化成為無線電訊框格式;以及LTE通道獲取元件廣播邏輯,組構以廣播包含該實體層訊胞識別及/或LTE頻帶資訊的該無線電訊框至該WLAN AP之涵蓋區域內的至少一UE。
另一實例WLAN AP包含上述該等組件,且其中該最
佳的實體層訊胞識別及/或LTE頻帶資訊係組構以在該至少一UE落在該WLAN AP的涵蓋區域之外面的事件中,由該WLAN AP的涵蓋區域內之至少一UE所使用。
另一實例WLAN AP包含上述該等組件,且其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與eNB時槽及訊框時序同步的下載參考信號。
另一實例WLAN AP包含上述該等組件,且其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
另一實例WLAN AP包含上述該等組件,且其中該無線電訊框格式係802.11-可相容訊框格式。
另一實例WLAN AP包含上述該等組件,且其中該LTE通道獲取元件廣播邏輯係進一步組構以週期性地廣播包含該實體層訊胞識別及/或LTE頻帶資訊的該無線電訊框至該WLAN AP之涵蓋區域內的至少一UE。
另一觀點提供一種方法,其包含使接收自IRP管理器之最佳的實體層訊胞識別及/或LTE頻帶資訊格式化成為無線電訊框格式;以及傳送包含該實體層訊胞識別及/或LTE頻帶資訊的該無線電訊框至WLAN AP之涵蓋區域內的至少一UE。
另一實例方法包含上述該等操作,且其中該最佳的實
體層訊胞識別及/或LTE頻帶資訊係組構以在該至少一UE落在該WLAN AP的涵蓋區域之外面的事件中,由該WLAN AP的涵蓋區域內之至少一UE所使用。
另一實例方法包含上述該等操作,且其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與eNB時槽及訊框時序同步的下載參考信號。
另一實例方法包含上述該等操作,且其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
另一實例方法包含上述該等操作,且其中該無線電訊框格式係802.11-可相容訊框格式。
另一實例方法包含上述該等操作,且進一步包含週期性地傳送包含該實體層訊胞識別及/或LTE頻帶資訊的該無線電訊框至該WLAN AP之涵蓋區域內的至少一UE。
另一觀點提供一種UE,其包含LTE通道獲取元件訊框邏輯,組構以解析接收自WLAN AP之LTE通道獲取元件訊框,而決定與eNB相關聯之目標訊胞相關聯的實體層訊胞識別及/或LTE頻帶資訊;WLAN控制器,組構以提供與該WLAN AP之WLAN通訊;以及LTE控制器,組構以提供與LTE網路之LTE訊胞通訊。
另一實例UE包含上述該等組件,且其中該實體層訊
胞識別及/或LTE頻帶資訊係組構以由LTE控制器所使用,而在WLAN控制器未能與該WLAN AP通訊的事件中,連接至訊胞。
另一實例UE包含上述該等組件,且其中該LTE控制器係組構以當該WLAN保持與該WLAN AP通訊時,使被失能,以及其中,若WLAN控制器未能與該WLAN AP通訊時,該LTE控制器係組構以被致能,而使用該實體層訊胞識別及/或LTE頻帶資訊以准許訊胞通訊。
另一實例UE包含上述該等組件,且進一步包含LTE/WLAN AP決定邏輯,組構以藉由如由實體層訊胞識別及LTE頻帶資訊所指示地掃描LTE通道且比較該LTE通道與WLAN AP通道,而決定LTE通訊與WLAN AP通訊之間的最佳連接。
另一實例UE包含上述該等組件,且其中該LTE/WLAN AP決定邏輯係組構以比較LTE通道的RSRP(參考信號接收功率)及RSRQ(參考信號接收品質)與該WLAN AP的RSRP及RSRQ,而決定LTE與WLAN AP之間的最佳連接。
另一實例UE包含上述該等組件,且其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與eNB時槽及訊框時序同步的下載參考信號。
另一實例UE包含上述該等組件,且其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之
上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
另一實例UE包含上述該等組件,且其中該WLAN控制器係組構以提供802.11與該WLAN AP之可相容通訊。
依據另一觀點,提供有至少一電腦可讀取儲存媒體,具有儲存於其上之指令,當藉由處理器而予以執行時,致使該處理器執行如上述該等實例的任一者中所敍述之方法的該等操作。
依據另一觀點,提供有一種設備,包含用以執行如上述該等實例的任一者中所敍述之方法的裝置。
已在本文被使用之術語及表示係使用做為說明之用語且並非限制,以及在該等術語及表示的使用中,並不打算排除所顯示及所敘述之特性(或其一部分)的等效例,且應被認知的是,在申請專利範圍的範疇之內,各式各樣的修正係可能的。因而,該等申請專利範圍係打算要涵蓋所有該等等效例。在本文中已敘述種種特性、觀點、及實施例。該等特性、觀點、及實施例係容許彼此互相結合,以及容許變化及修正,如熟習本項技藝之該等人士所瞭解地。因此,本發明應被視為包含該等結合、變化、及修正。
100‧‧‧無線電網路
102‧‧‧訊胞A
104‧‧‧訊胞B
108‧‧‧WLAN AP(無線電局部區域網路存取點)
110‧‧‧UE(使用者裝備)
Claims (34)
- 一種IRP管理器,包含:查詢邏輯,組構以查詢與該IRP管理器通訊之至少一eNB,而檢索與該至少一eNB相關聯的實體層訊胞識別及/或LTE頻帶資訊;該查詢邏輯亦係組構以決定最佳的實體層訊胞識別及/或LTE頻帶資訊,用於與該至少一eNB相關聯的訊胞;以及WLAN AP控制邏輯,組構以產生控制訊框,而控制與該IRP管理器通訊之WLAN AP,該控制訊框包含用於與該至少一eNB相關聯的訊胞之該最佳的實體層訊胞識別及/或LTE頻帶資訊。
- 如申請專利範圍第1項之IRP管理器,進一步包含eNB/WLAN AP關係邏輯,組構以決定該至少一eNB與至少一WLAN AP之間的涵蓋關係,且進一步組構以指示自該至少一eNB卸載至該至少一WLAN AP之話務。
- 如申請專利範圍第1項之IRP管理器,其中該最佳的實體層訊胞識別及/或LTE頻帶係根據以下參數的至少一者:複數個eNB之間的負載平衡,網路拓樸統計,目前之訊胞涵蓋區域,一或多個鄰近訊胞之涵蓋區域,訊胞網路話務負載,訊胞中斷,訊胞服務之降級的品質,與UE及/或eNB相關聯之服務品質(QoS)等級,及/或使用者優先序等級。
- 如申請專利範圍第1項之IRP管理器,其中該最佳的實體層訊胞識別及/或LTE頻帶資訊係組構以在至少一 UE落在該WLAN AP的涵蓋區域之外面的事件中,由該WLAN AP的涵蓋區域內之至少一UE所使用。
- 如申請專利範圍第1項之IRP管理器,其中該查詢邏輯及/或該WLAN AP控制邏輯係與和該至少一eNB通訊的網路管理器(NM)相關聯。
- 如申請專利範圍第1項之IRP管理器,其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與該eNB時槽及訊框時序同步的下載參考信號。
- 如申請專利範圍第1項之IRP管理器,其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
- 一種方法,包含:查詢至少一eNB以檢索與該至少一eNB相關聯的實體層訊胞識別及/或LTE頻帶資訊;決定最佳的實體層訊胞識別及/或LTE頻帶資訊,用於與該至少一eNB相關聯的訊胞;以及產生控制訊框以控制WLAN AP,該控制訊框包含用於與該至少一eNB相關聯的訊胞之該最佳的實體層訊胞識別及/或LTE頻帶資訊。
- 如申請專利範圍第8項之方法,其中該最佳的實體層訊胞識別及/或LTE頻帶係根據以下參數的至少一者: 複數個eNB之間的負載平衡,網路拓樸統計,目前之訊胞涵蓋區域,一或多個鄰近訊胞之涵蓋區域,訊胞網路話務負載,訊胞中斷,訊胞服務之降級的品質,與UE及/或eNB相關聯之服務品質(QoS)等級,及/或使用者優先序等級。
- 如申請專利範圍第8項之方法,其中該最佳的實體層訊胞識別及/或LTE頻帶資訊係組構以在至少一UE落在該WLAN AP的涵蓋區域之外面的事件中,由該WLAN AP的涵蓋區域內之至少一UE所使用。
- 如申請專利範圍第8項之方法,其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與該eNB時槽及訊框時序同步的下載參考信號。
- 如申請專利範圍第8項之方法,其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
- 一種系統,包含一或多個儲存裝置,具有個別地或組合地儲存於其上之指令,當藉由一或多個處理器而予以執行時,產生以下之操作,包含:如申請專利範圍第8至12項中任一項之操作。
- 一種WLAN AP,包含:訊框邏輯,組構以使接收自與該WLAN AP通訊的 IRP管理器之最佳的實體層訊胞識別及/或LTE頻帶資訊,格式化成為無線電訊框格式;以及LTE通道獲取元件廣播邏輯,組構以廣播包含該實體層訊胞識別及/或LTE頻帶資訊的該無線電訊框至該WLAN AP之涵蓋區域內的至少一UE。
- 如申請專利範圍第14項之WLAN AP,其中該最佳的實體層訊胞識別及/或LTE頻帶資訊係組構以在該至少一UE落在該WLAN AP的涵蓋區域之外面的事件中,由該WLAN AP的涵蓋區域內之至少一UE所使用。
- 如申請專利範圍第14項之WLAN AP,其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與eNB時槽及訊框時序同步的下載參考信號。
- 如申請專利範圍第14項之WLAN AP,其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
- 如申請專利範圍第14項之WLAN AP,其中該無線電訊框格式係802.11-可相容訊框格式。
- 如申請專利範圍第14項之WLAN AP,其中該LTE通道獲取元件廣播邏輯係進一步組構以週期性地廣播包含該實體層訊胞識別及/或LTE頻帶資訊的該無線電訊框至該WLAN AP之涵蓋區域內的至少一UE。
- 一種方法,包含:使接收自IRP管理器之最佳的實體層訊胞識別及/或LTE頻帶資訊格式化成為無線電訊框格式;以及傳送包含該實體層訊胞識別及/或LTE頻帶資訊的該無線電訊框至WLAN AP之涵蓋區域內的至少一UE。
- 如申請專利範圍第20項之方法,其中該最佳的實體層訊胞識別及/或LTE頻帶資訊係組構以在該至少一UE落在該WLAN AP的涵蓋區域之外面的事件中,由該WLAN AP的涵蓋區域內之至少一UE所使用。
- 如申請專利範圍第20項之方法,其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與eNB時槽及訊框時序同步的下載參考信號。
- 如申請專利範圍第20項之方法,其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
- 如申請專利範圍第20項之方法,其中該無線電訊框格式係802.11-可相容訊框格式。
- 如申請專利範圍第20項之方法,進一步包含週期性地傳送包含該實體層訊胞識別及/或LTE頻帶資訊的該無線電訊框至該WLAN AP之涵蓋區域內的至少一UE。
- 一種系統,包含一或多個儲存裝置,具有被個別 地或組合地儲存於其上之指令,當藉由一或多個處理器而予以執行時,產生以下之操作,包含:如申請專利範圍第20至25項中任一項之操作。
- 一種UE,包含:LTE通道獲取元件訊框邏輯,組構以解析接收自WLAN AP之LTE通道獲取元件訊框,而決定與eNB相關聯之目標訊胞相關聯的實體層訊胞識別及/或LTE頻帶資訊;WLAN控制器,組構以提供與該WLAN AP之WLAN通訊;以及LTE控制器,組構以提供與LTE網路之LTE訊胞通訊。
- 如申請專利範圍第27項之UE,其中該實體層訊胞識別及/或LTE頻帶資訊係組構以由LTE控制器所使用,而在WLAN控制器未能與該WLAN AP通訊的事件中,連接至訊胞。
- 如申請專利範圍第28項之UE,其中LTE控制器係組構以當該WLAN保持與該WLAN AP通訊時,使被失能,以及其中,若WLAN控制器未能與該WLAN AP通訊時,該LTE控制器係組構以被致能,而使用該實體層訊胞識別及/或LTE頻帶資訊以准許訊胞通訊。
- 如申請專利範圍第27項之UE,進一步包含LTE/WLAN AP決定邏輯,組構以藉由如由實體層訊胞識別及LTE頻帶資訊所指示地掃描LTE通道且比較該LTE 通道與WLAN AP通道,而決定LTE通訊與WLAN AP通訊之間的最佳連接。
- 如申請專利範圍第30項之UE,其中該LTE/WLAN AP決定邏輯係組構以比較LTE通道的RSRP(參考信號接收功率)及RSRQ(參考信號接收品質)與該WLAN AP的RSRP及RSRQ,而決定LTE與WLAN AP之間的最佳連接。
- 如申請專利範圍第27項之UE,其中該實體層訊胞識別包含屬於至少一唯一實體層訊胞本體之資訊,以及其中實體層訊胞本體對應被使用於與eNB時槽及訊框時序同步的下載參考信號。
- 如申請專利範圍第27項之UE,其中該LTE頻帶資訊包含屬於與用於該訊胞的分頻多工(FDD)操作狀態之上行鏈路(UL)及下行鏈路(DL)通道相關聯的頻率及帶寬,及/或用於該訊胞的分時多工(TDD)操作狀態的頻率及帶寬之資訊。
- 如申請專利範圍第27項之UE,其中該WLAN控制器係組構以提供802.11-與該WLAN AP之可相容通訊。
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