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    • 6. 发明授权
    • Wireless LAN protocol stack
    • 无线局域网协议栈
    • US08472473B2
    • 2013-06-25
    • US10964237
    • 2004-10-13
    • John W. KetchumJay Rodney WaltonSanjiv Nanda
    • John W. KetchumJay Rodney WaltonSanjiv Nanda
    • H04J3/22
    • H04W28/065H04L1/1635H04L25/03343H04L29/06H04L47/2441H04L69/16H04L69/161H04L69/22H04L69/32H04W80/02H04W84/12
    • Embodiments addressing MAC processing for efficient use of high throughput systems are disclosed. In one aspect, a protocol stack is disclosed comprising one or more of the following: an adaptation layer, a data link control layer, a physical layer, and a layer manager. In another aspect, physical layer feedback is used for adaptation layer processing. In one embodiment, physical layer feedback is used for segmentation. In another embodiment, physical layer feedback is used for multicast mapping onto one or more unicast channels. In another aspect, a data unit for transmission from a first station to a second station comprises zero or more complete sub-data units, zero or one partial sub-data units from a prior transmission, and zero or one partial sub-data units to fill the data unit. In one embodiment, a pointer may be used to indicate the location of any complete sub-data units.
    • 公开了解决用于高吞吐量系统的有效使用的MAC处理的实施例。 一方面,公开了一种协议栈,其包括以下一个或多个:适配层,数据链路控制层,物理层和层管理器。 在另一方面,物理层反馈用于适应层处理。 在一个实施例中,物理层反馈用于分割。 在另一个实施例中,物理层反馈用于到一个或多个单播信道上的多播映射。 在另一方面,用于从第一站到第二站的传输的数据单元包括零个或多个完整的子数据单元,来自先前传输的零个或一个部分子数据单元,以及零个或一个部分子数据单元 填写数据单元。 在一个实施例中,可以使用指针来指示任何完整的子数据单元的位置。
    • 10. 发明授权
    • Spatial spreading in a multi-antenna communication system
    • 多天线通信系统中的空间扩展
    • US08204149B2
    • 2012-06-19
    • US11008865
    • 2004-12-09
    • Jay Rodney WaltonLizhong ZhengJohn W. KetchumMark S. WallaceSteven J. Howard
    • Jay Rodney WaltonLizhong ZhengJohn W. KetchumMark S. WallaceSteven J. Howard
    • H04L27/26H04B7/06
    • H04B7/0417H04B7/0456H04B7/0669H04B17/336H04L1/06
    • Spatial spreading is performed in a multi-antenna system to randomize an “effective” channel observed by a receiving entity for each transmitted data symbol block. For a MIMO system, at a transmitting entity, data is processed (e.g., encoded, interleaved, and modulated) to obtain ND data symbol blocks to be transmitted in NM transmission spans, where ND≧1 and NM>1. The ND blocks are partitioned into NM data symbol subblocks, one subblock for each transmission span. A steering matrix is selected (e.g., in a deterministic or pseudo-random manner from among a set of L steering matrices, where L>1) for each subblock. Each data symbol subblock is spatially processed with the steering matrix selected for that subblock to obtain transmit symbols, which are further processed and transmitted via NT transmit antennas in one transmission span. The ND data symbol blocks are thus spatially processed with NM steering matrices and observe an ensemble of channels.
    • 在多天线系统中执行空间扩展,以随机化接收实体针对每个发送的数据符号块观察到的“有效”信道。 对于MIMO系统,在发送实体处理(例如,编码,交织和调制)数据,以获得将以NM≥1和NM> 1的NM传输跨度发送的ND数据符号块。 ND块被划分为NM数据符号子块,每个传输跨度的一个子块。 对于每个子块,选择导向矩阵(例如,以确定性或伪随机方式从一组L个导引矩阵中,其中L> 1)。 每个数据符号子块用为该子块选择的导引矩阵进行空间处理,以获得在一个传输范围内经由NT个发射天线进一步处理和传输的发射符号。 因此,ND数据符号块用NM导引矩阵进行空间处理,并观察信道的集合。