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    • 21. 发明申请
    • METHODS AND ARRANGEMENTS TO EXTEND OPERATIONAL BANDWIDTH
    • 方法和安排延长操作带宽
    • WO2015099803A1
    • 2015-07-02
    • PCT/US2013/078160
    • 2013-12-28
    • INTEL IP CORPORATIONKENNEY, Thomas J.PERAHIA, EldadAZIZI, Shahrnaz
    • KENNEY, Thomas J.PERAHIA, EldadAZIZI, Shahrnaz
    • H04J11/00
    • H04L69/22H04L27/2626H04L69/323H04W72/044H04W84/12
    • Logic may parse a data stream into two or more 80 megahertz or 160 megahertz bandwidth frequency segments. Logic may parse a data stream into two or more frequency segments having a total bandwidth of greater than 160 megahertz. Logic may deparse the data stream prior to transmitting the data stream to transmit a communication with a contiguous bandwidth of greater than 160 megahertz. Logic may deparse the data stream prior to space-time block coding of the data stream. Logic may transmit the data stream in two or more frequency segments having a total bandwidth of greater than 160 megahertz. Logic may receive a communication with a contiguous bandwidth or two or more frequency segments with contiguous or non-contiguous bandwidths. Logic may parse a communication with a contiguous bandwidth into two or more frequency segments. And logic may deparse the frequency segments to decode the communication.
    • 逻辑可以将数据流解析为两个或更多个80兆赫兹或160兆赫兹带宽频率段。 逻辑可以将数据流解析成具有大于160兆赫的总带宽的两个或更多个频段。 在发送数据流之前,逻辑可能会使数据流松散,以传输具有大于160兆赫兹的连续带宽的通信。 在数据流的空时块编码之前,逻辑可以削弱数据流。 逻辑可以在总带宽大于160兆赫兹的两个或多个频段中发送数据流。 逻辑可以接收具有连续带宽或具有连续或不连续带宽的两个或多个频率段的通信。 逻辑可以将具有连续带宽的通信解析为两个或更多个频率段。 并且逻辑可以削弱频段以解码通信。
    • 27. 发明申请
    • METHODS AND ARRANGEMENTS FOR PHASE TRACKING FOR MULTI-MODE OPERATION IN WIRELESS NETWORKS
    • 无线网络中多模式操作的相位跟踪方法与安排
    • WO2014105212A1
    • 2014-07-03
    • PCT/US2013/048825
    • 2013-06-29
    • INTEL CORPORATIONAZIZI, ShahrnazPERAHIA, EldadKENNEY, Thomas
    • AZIZI, ShahrnazPERAHIA, EldadKENNEY, Thomas
    • H04L27/18H04L27/26
    • H04L27/2647H04L25/0204H04L25/0226H04L25/03006H04L27/18H04L27/2662H04L27/2666H04L27/2675H04L2025/03414
    • Logic may comprise a single phase tracking implementation for all bandwidths of operation and the logic may adaptively change pre-defined and stored track parameters if the 5 receiving packet is 1 MHz bandwidth. Logic may detect a packet and long training fields before performing a 1 MHz classification. Logic may auto-detect 1 MHz bandwidth transmissions by a property of the long training field sequences. Logic may auto-detect 1 MHz bandwidth transmissions by detecting a Binary Phase Shift Keying (BPSK) modulated first signal field symbol rather than the Quadrature Binary Phase Shift Keying (QBPSK) associated with the 2 10 MHz or greater bandwidth transmissions. Logic may perform an algorithm to determine an estimated phase correction value for a given orthogonal frequency division multiplexing symbol and several embodiments integrate this value with an intercept multiplier that may be 0.2 for 1 MHz transmissions and, e.g., 0.5 for 2 MHz or greater bandwidth communication.
    • 逻辑可以包括用于所有操作带宽的单相跟踪实现,并且如果5个接收分组是1MHz带宽,则逻辑可以自适应地改变预定义和存储的轨道参数。 逻辑可以在执行1 MHz分类之前检测数据包和长训练字段。 逻辑可以通过长训练场序列的属性自动检测1 MHz带宽传输。 逻辑可以通过检测二进制相移键控(BPSK)调制的第一信号字段符号而不是与2 10 MHz或更大带宽传输相关联的正交二进制相移键控(QBPSK)来自动检测1 MHz带宽传输。 逻辑可以执行算法来确定给定正交频分多路复用符号的估计相位校正值,并且若干实施例将该值与截距乘数进行集成,对于1MHz传输可以为0.2,并且例如对于2MHz或更大带宽通信为0.5 。