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    • 2. 发明申请
    • Control Mechanism for Communication Via Different Frequency Bands
    • 通过不同频带通信的控制机制
    • US20140376483A1
    • 2014-12-25
    • US14375857
    • 2012-02-08
    • Wei HongWei BaiJing HanErlin ZengHaiming WangNa WeiChunyan GaoPengfei Sun
    • Wei HongWei BaiJing HanErlin ZengHaiming WangNa WeiChunyan GaoPengfei Sun
    • H04W16/14
    • H04W16/14H04L1/08H04W28/085H04W72/048H04W74/08H04W88/06H04W88/10
    • There is provided a mechanism for controlling communications conducted via different frequency bands or communication spectrums. When a communication via a first communication path, for example an unlicensed or white space communication spectrum, is to be established, e.g. for offloading traffic from a second communication path, for example a licensed cellular communication spectrum, a preamble transmission command is generated and transmitted from a communication network control element, such as an eNB, via the second communication path to a communication element, such as a UE. By means of the preamble transmission command, the transmission of a preamble signal by the receiving communication element on the first communication path with predetermined communication resources is triggered. Based on a receipt or non-receipt of the preamble signal via the first communication path, the communication network control element is able to determine that the communication element can establish a connection on the first communication path, for example the unlicensed or white space communication spectrum.
    • 提供了用于控制经由不同频带或通信频谱进行通信的机制。 当通过第一通信路径进行通信时,例如未许可或白空间通信频谱,将被建立,例如, 为了从第二通信路径(例如许可的蜂窝通信频谱)卸载业务,生成前导发送命令,并且经由第二通信路径从诸如eNB的通信网络控制元件发送到通信元件,例如 UE。 借助于前导码传输命令,触发由具有预定通信资源的第一通信路径上的接收通信元件的前导码信号的发送。 基于经由第一通信路径的前导信号的接收或不接收,通信网络控制元件能够确定通信元件可以在第一通信路径上建立连接,例如,未许可或白空间通信频谱 。
    • 4. 发明授权
    • Control mechanism for communication via different frequency bands
    • 通过不同频段进行通信的控制机制
    • US09426664B2
    • 2016-08-23
    • US14375857
    • 2012-02-08
    • Wei HongWei BaiJing HanErlin ZengHaiming WangNa WeiChunyan GaoPengfei Sun
    • Wei HongWei BaiJing HanErlin ZengHaiming WangNa WeiChunyan GaoPengfei Sun
    • H04Q7/00H04W16/14H04W72/04H04L1/08H04W74/08H04W88/06H04W88/10H04W28/08
    • H04W16/14H04L1/08H04W28/085H04W72/048H04W74/08H04W88/06H04W88/10
    • There is provided a mechanism for controlling communications conducted via different frequency bands or communication spectrums. When a communication via a first communication path, for example an unlicensed or white space communication spectrum, is to be established, e.g. for offloading traffic from a second communication path, for example a licensed cellular communication spectrum, a preamble transmission command is generated and transmitted from a communication network control element, such as an eNB, via the second communication path to a communication element, such as a UE. By means of the preamble transmission command, the transmission of a preamble signal by the receiving communication element on the first communication path with predetermined communication resources is triggered. Based on a receipt or non-receipt of the preamble signal via the first communication path, the communication network control element is able to determine that the communication element can establish a connection on the first communication path, for example the unlicensed or white space communication spectrum.
    • 提供了用于控制经由不同频带或通信频谱进行通信的机制。 当通过第一通信路径进行通信时,例如未许可或白空间通信频谱,将被建立,例如, 为了从第二通信路径(例如许可的蜂窝通信频谱)卸载业务,生成前导发送命令,并且经由第二通信路径从诸如eNB的通信网络控制元件发送到通信元件,例如 UE。 借助于前导码传输命令,触发由具有预定通信资源的第一通信路径上的接收通信元件的前导码信号的传输。 基于经由第一通信路径的前导信号的接收或不接收,通信网络控制元件能够确定通信元件可以在第一通信路径上建立连接,例如,未许可或白空间通信频谱 。
    • 5. 发明申请
    • CONTROL CHANNEL CONFIGURATION FOR STAND-ALONE NEW CARRIER TYPE
    • 用于独立新载体类型的控制通道配置
    • US20150280881A1
    • 2015-10-01
    • US14434326
    • 2012-10-10
    • Chunyan GAOErlin ZENGShuang TANNa WEIWei HONGPengfei SUNWei BAILili ZHANG
    • Chunyan GaoErlin ZengShuang TanNa WeiWei HongPengfei SunWei BaiLili Zhang
    • H04L5/00H04W72/04
    • H04L5/0053H04W48/12H04W72/042
    • A user equipment UE determines at least one first set SI of physical resource blocks PRBs, and detects downlink signaling within search spaces of set(s) SI. Through that downlink signaling the UE obtains a configuration for a downlink control channel, and that configuration indicates at least one second set S2 of PRBs and at least one search space specific for the UE which lies within S2. The UE utilizes the obtained configuration to monitor at least some of the search spaces of SI and the at least one search space specific for the UE of S2 for further downlink control signaling. Multiple implementations are detailed for how the UE gets SI. This invention is particularly useful for a configurable ePDCCH region in a stand-alone carrier where the UE is not able to get the new configuration from some other carrier such as a PCell whose configuration does not change.
    • 用户设备UE确定物理资源块PRB的至少一个第一集合SI,并且检测集合SI的搜索空间内的下行链路信令。 通过该下行链路信令,UE获得用于下行链路控制信道的配置,并且该配置指示PRB的至少一个第二组S2和位于S2内的UE特有的至少一个搜索空间。 UE利用所获得的配置来监视SI的搜索空间和针对S2的UE特定的至少一个搜索空间的另外的下行链路控制信令的至少一些。 详细说明了UE如何获取SI的多个实现。 本发明对于独立载波中的可配置ePDCCH区域是特别有用的,其中UE不能从诸如其配置不改变的PCell的其他载体获得新配置。
    • 7. 发明授权
    • Shortened subframe format for FDD
    • 缩短FDD子帧格式
    • US09277447B2
    • 2016-03-01
    • US13880526
    • 2010-10-20
    • Na WeiChunyan GaoHaiming WangWei BaiWei HongJing Han
    • Na WeiChunyan GaoHaiming WangWei BaiWei HongJing Han
    • H04W28/06H04L5/00H04W28/08
    • H04W28/06H04L5/001H04L5/0048H04W28/08
    • A method includes determining one of a multiplicity of subframes in a resource space in which a shortened subframe is to be communicated. Each of the subframes has a predetermined number of symbol positions. The resource space includes the multiplicity of subframes. The method includes communicating the shortened subframe in the determined subframe. The shortened subframe has a multiplicity of active symbols at first symbol positions in the determined subframe and has a multiplicity of blanked symbols at second symbol positions in the determined subframe. In an embodiment, each of the subframes is a first subframe carried on subcarrier. The resource space corresponds to a special subframe in a frame including the special subframe and a multiplicity of second subframes. The special subframe and the plurality of second subframes are located in different timeslots. Apparatus, computer programs, and program products are also disclosed.
    • 一种方法包括确定在其中要传送缩短的子帧的资源空间中的多个子帧之一。 每个子帧具有预定数量的符号位置。 资源空间包括多个子帧。 该方法包括在确定的子帧中传送缩短的子帧。 缩短的子帧在确定的子帧中的第一符号位置处具有多个有效符号,并且在确定的子帧中的第二符号位置处具有多个空白符号。 在一个实施例中,每个子帧是在子载波上承载的第一子帧。 资源空间对应于包括特殊子帧和多个第二子帧的帧中的特殊子帧。 特殊子帧和多个第二子帧位于不同的时隙中。 还公开了装置,计算机程序和程序产品。
    • 8. 发明申请
    • Resource Allocation In Different TDD Configurations With Cross Carrier Scheduling
    • 在具有交叉载波调度的不同TDD配置中的资源分配
    • US20150103703A1
    • 2015-04-16
    • US14395201
    • 2012-04-20
    • Erlin ZengJing HanChunyan GaoWei BaiHaiming WangWei Hong
    • Erlin ZengJing HanChunyan GaoWei BaiHaiming WangWei Hong
    • H04W72/04H04L5/00H04W72/14H04L5/14
    • H04W72/042H04L5/001H04L5/0055H04L5/0092H04L5/14H04L5/1469H04W72/14
    • A downlink resource grant is on a first component carrier having a first downlink to uplink DL/UL subframe configuration, and cross schedules to a second component carrier having a different second DL/UL subframe configuration. If a first set SI of downlink subframes associated with a subframe n of the first DL/UL subframe configuration only partially overlaps with a second set S2 of downlink subframes associated with the subframe n of the second DL/UL subframe configuration, then explicit signaling is utilized to select whether uplink radio resources in subframe n for channel selection are implicitly or explicitly allocated. If instead SI does not only partially overlap SI, then a default rule is utilized for allocating the uplink radio resources in subframe n for channel selection. In different examples the explicit signaling is higher layer signaling which configures a UE; or a predetermined state in a field of the PDCCH.
    • 下行链路资源授权在具有第一下行链路到上行链路DL / UL子帧配置的第一分量载波上,并且交叉调度到具有不同的第二DL / UL子帧配置的第二分量载波。 如果与第一DL / UL子帧配置的子帧n相关联的下行链路子帧的第一集合SI仅部分地与与第二DL / UL子帧配置的子帧n相关联的下行链路子帧的第二集合S2重叠,则显式信令是 用于选择用于信道选择的子帧n中的上行链路无线电资源是否被隐式或显式分配。 如果相反,SI不仅部分地重叠SI,则使用默认规则来分配用于信道选择的子帧n中的上行链路无线电资源。 在不同的示例中,显式信令是配置UE的较高层信令; 或PDCCH的字段中的预定状态。
    • 10. 发明申请
    • SHORTENED SUBFRAME FORMAT FOR FDD
    • 用于FDD的SHORTENED SUBFRAME格式
    • US20130286907A1
    • 2013-10-31
    • US13880526
    • 2010-10-20
    • Na WeiChunyan GaoHaiming WangWei BaiWei HongJing Han
    • Na WeiChunyan GaoHaiming WangWei BaiWei HongJing Han
    • H04W28/06
    • H04W28/06H04L5/001H04L5/0048H04W28/08
    • A method includes determining one of a multiplicity of subframes in a resource space in which a shortened subframe is to be communicated. Each of the subframes has a predetermined number of symbol positions. The resource space includes the multiplicity of subframes. The method includes communicating the shortened subframe in the determined subframe. The shortened subframe has a multiplicity of active symbols at first symbol positions in the determined subframe and has a multiplicity of blanked symbols at second symbol positions in the determined subframe. In an embodiment, each of the subframes is a first subframe carried on subcarrier. The resource space corresponds to a special subframe in a frame including the special subframe and a multiplicity of second subframes. The special subframe and the plurality of second subframes are located in different timeslots. Apparatus, computer programs, and program products are also disclosed.
    • 一种方法包括确定在其中要传送缩短的子帧的资源空间中的多个子帧之一。 每个子帧具有预定数量的符号位置。 资源空间包括多个子帧。 该方法包括在确定的子帧中传送缩短的子帧。 缩短的子帧在确定的子帧中的第一符号位置处具有多个有效符号,并且在确定的子帧中的第二符号位置处具有多个空白符号。 在一个实施例中,每个子帧是在子载波上承载的第一子帧。 资源空间对应于包括特殊子帧和多个第二子帧的帧中的特殊子帧。 特殊子帧和多个第二子帧位于不同的时隙中。 还公开了装置,计算机程序和程序产品。