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    • 31. 发明授权
    • Overall MU-MIMO capacity for users with unequal packet lengths in an MU-MIMO frame
    • 在MU-MIMO帧中具有不等长分组长度的用户的总MU-MIMO容量
    • US09398598B2
    • 2016-07-19
    • US14262328
    • 2014-04-25
    • Broadcom Corporation
    • David GarrettJun ZhengNihar Jindal
    • H04W72/08H04W52/24
    • H04W72/085H04L1/0003H04W52/241
    • In some aspects, the disclosure is directed to methods and systems for transmitting packets (including but not limited to MU-MIMO packets). An access point communicating wirelessly with a plurality of devices can determine that a first packet for a first device of the plurality of devices has a first transmission duration. The access point can determine that a second packet for a second device of the plurality of devices has a second transmission duration shorter than the first transmission duration. The access point can adjust, based on the determination, a transmission power or a modulation and coding scheme to transmit the second packet during a third transmission duration. The third transmission duration can be greater than the second transmission duration.
    • 在一些方面,本公开涉及用于传送分组(包括但不限于MU-MIMO分组)的方法和系统。 与多个设备无线通信的接入点可以确定多个设备中的第一设备的第一分组具有第一传输持续时间。 接入点可以确定多个设备中的第二设备的第二分组具有比第一传输持续时间短的第二传输持续时间。 接入点可以基于确定调整在第三传输持续时间期间发送第二分组的传输功率或调制和编码方案。 第三传输持续时间可以大于第二传输持续时间。
    • 33. 发明授权
    • Spatial null creation using massive MIMO (M-MIMO)
    • 使用大量MIMO(M-MIMO)的空间零空间
    • US09300501B2
    • 2016-03-29
    • US14137222
    • 2013-12-20
    • Broadcom Corporation
    • Nihar Jindal
    • H04L25/03H04B7/04H04B7/06
    • H04B7/0456H04B7/0413H04B7/0617H04L25/03898H04W72/0413
    • In a base station having a Massive Multiple Input Multiple Output (M-MIMO) antenna array, the availability of the M-MIMO antenna array is exploited to manage the interference caused by the base station to neighboring cells. In one embodiment, the large number of antenna elements of the M-MIMO antenna array are used to create precise transmit and/or receive spatial nulls at specific User Equipments (UEs) being served by a neighboring cell and/or in select areas of the neighboring cell. Depending on whether the spatial null is partial or full, transmissions by the base station may have reduced or even zero receive power within the neighboring cell.
    • 在具有大规模多输入多输出(M-MIMO)天线阵列的基站中,利用M-MIMO天线阵列的可用性来管理由基站对相邻小区造成的干扰。 在一个实施例中,M-MIMO天线阵列的大量天线元件用于在由相邻小区服务的特定用户设备(UE)和/或在相邻小区的选定区域中创建精确的发射和/或接收空间零点 相邻单元格。 取决于空间空值是部分还是完全,基站的传输可能在相邻小区内具有减小的或甚至零的接收功率。
    • 37. 发明申请
    • Multiple narrow bandwidth channel access and MAC operation within wireless communications
    • 无线通信中的多个窄带通道接入和MAC操作
    • US20140307653A1
    • 2014-10-16
    • US14252646
    • 2014-04-14
    • BROADCOM CORPORATION
    • Yong LiuRon PoratNihar JindalVinko ErcegMatthew James FischerChiu Ngok Eric Wong
    • H04W72/04H04B7/26
    • H04B7/2612H04W74/006
    • A wireless communication device is implemented to include a communication interface and a processor. The processor is configured to process communications associated with the other wireless communication devices within the wireless communication system to determine one or more traffic characteristics of those communications as well as one or more class characteristics of the other wireless communication devices. The processor is configured to classify the communications into one or more access categories based on the one or more traffic characteristics and is configured to classify the other devices into one or more device class categories based on the one or more class characteristics. The processor is then configured to generate one or more channel access control signals based on these classifications. The communication interface of the device is configured to transmit the one or more channel access control signals to one or more of the other devices.
    • 无线通信设备被实现为包括通信接口和处理器。 处理器被配置为处理与无线通信系统内的其他无线通信设备相关联的通信,以确定那些通信的一个或多个业务特性以及其它无线通信设备的一个或多个类别特性。 处理器被配置为基于一个或多个业务特性将通信分类为一个或多个访问类别,并且被配置为基于一个或多个类特征将其他设备分类为一个或多个设备类别类别。 然后,处理器被配置为基于这些分类生成一个或多个信道访问控制信号。 设备的通信接口被配置为将一个或多个信道访问控制信号发送到一个或多个其他设备。
    • 38. 发明申请
    • Orthogonal frequency division multiple access (OFDMA) and duplication signaling within wireless communications
    • 无线通信中的正交频分多址(OFDMA)和复制信令
    • US20140198705A1
    • 2014-07-17
    • US14041225
    • 2013-09-30
    • BROADCOM CORPORATION
    • Ron PoratNihar Jindal
    • H04W4/06
    • H04L27/2602H04L1/04H04L5/0007H04L5/0044H04L5/006
    • Communications are supported between wireless communication devices using OFDMA signaling and duplicate processing. An OFDMA frame, which includes first data intended for a first recipient device and second data intended for a second recipient device, is transmitted via a first sub-channel, and a duplicate of the OFDMA frame is transmitted via a second sub-channel. In some instances, additional duplicates of the OFDMA frame are transmitted via additional sub-channels. The OFDMA frame may be generated based on a first frequency and then down-clocked to a second frequency that corresponds to a bandwidth of one of the sub-channels. A wireless communication device configured to perform such operations may be compliant with one or more IEEE 802.11 communication standards, protocols, and/or recommended practices and may also be backward compatible with prior versions of IEEE 802.11. Different numbers of sub-channels and sub-channels of different bandwidths may be used to different times.
    • 在使用OFDMA信令和重复处理的无线通信设备之间支持通信。 包括用于第一接收方设备的第一数据和第二接收设备的第二数据的OFDMA帧经由第一子信道被发送,并且经由第二子信道发送OFDMA帧的副本。 在一些情况下,通过附加子信道发送OFDMA帧的附加副本。 OFDMA帧可以基于第一频率产生,然后被下变频到对应于一个子信道的带宽的第二频率。 被配置为执行这种操作的无线通信设备可以符合一个或多个IEEE 802.11通信标准,协议和/或推荐做法,并且还可以向后兼容IEEE 802.11的先前版本。 不同数量的不同带宽的子信道和子信道可以用于不同的时间。