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    • 72. 发明申请
    • WIRELESS COMMUNICATION DEVICE AND METHOD FOR MULTI-MCS OFDM TRANSMISSIONS AT DIFFERENT TRANSMISSION POWER LEVELS
    • 无线通信设备及其在不同传输功率电平下的多MCS OFDM传输方法
    • US20150295676A1
    • 2015-10-15
    • US13993304
    • 2011-12-05
    • Thomas J. KenneyEldad Perahia
    • Thomas J. KenneyEldad Perahia
    • H04L1/00H04W52/36H04L5/00
    • H04L1/0003H04L1/0009H04L1/0015H04L1/06H04L5/0007H04L5/0023H04L5/0046H04L27/2627H04W52/367
    • Embodiments of a wireless communication device and method for multi-MCS OFDM transmissions at different transmission power levels are generally described herein. In some embodiments, the wireless communication device may have a multi-MCS OFDM transmitter that is configured to encode data for transmission over two or more RF channels with a single encoding scheme to generate an encoded data stream. The transmitter may segment bits of the encoded data stream into a bit stream for each of the RF channels based on a selected modulation level for each of the two or more RF channels. A separate time-domain multicarrier waveform may be concurrently transmitted on each of the two or more RF channels at a power level that is selected not to exceed a maximum allowable transmit power level for that RF channel. The modulation level for each RF channel may be selected based at least in part on the maximum allowable transmit power level for that RF channel.
    • 本文中通常描述用于在不同发射功率电平下进行多MCS OFDM传输的无线通信设备和方法的实施例。 在一些实施例中,无线通信设备可以具有多MCS OFDM发射机,其被配置为通过单个编码方案编码用于在两个或更多个RF信道上传输的数据,以生成编码数据流。 发射机可以基于用于两个或更多个RF信道中的每一个的所选择的调制级别将编码数据流的比特分段成每个RF信道的比特流。 可以在被选择为不超过该RF信道的最大可允许发射功率电平的功率电平的同时在两个或更多个RF信道中的每一个上同时发送单独的时域多载波波形。 可以至少部分地基于该RF信道的最大允许发射功率电平来选择每个RF信道的调制电平。
    • 76. 发明申请
    • METHODS AND ARRANGEMENTS FOR COMMUNICATIONS IN LOW POWER WIRELESS NETWORKS
    • 低功率无线网络通信的方法和安排
    • US20140185695A1
    • 2014-07-03
    • US13977699
    • 2011-12-30
    • Thomas J. KenneyEldad Perahia
    • Thomas J. KenneyEldad Perahia
    • H04L27/26
    • H04W28/065H04L1/08H04L27/2601H04L27/2613H04L27/2643
    • Embodiments may comprise an orthogonal frequency division multiplexing (OFDM) system operating in the 1 GHz and lower frequency bands. In many embodiments, the physical layer logic may implement repetition logic to repeat portions of the data streams to increase the ability of a receiving device to detect and decode the data streams. In some embodiments, the repetition logic may comprise a preamble repeater to repeat the training and/or signal fields. In further embodiments, the repetition logic may comprise a payload repeater to repeat the payload one or more times. Other embodiments comprise a receiving device comprising a correlator to correlate the repeated preamble symbols to detect a communication from a transmitting device. The receiving device may also comprise correction logic to correct data streams from the communications signal based upon repetitions of the payload in the data streams.
    • 实施例可以包括在1GHz和更低频带中工作的正交频分复用(OFDM)系统。 在许多实施例中,物理层逻辑可以实现重复逻辑以重复数据流的部分,以增加接收设备检测和解码数据流的能力。 在一些实施例中,重复逻辑可以包括用于重复训练和/或信号字段的前同步码中继器。 在另外的实施例中,重复逻辑可以包括有效载荷中继器,以一次或多次重复有效载荷。 其他实施例包括接收设备,其包括相关器,用于将重复的前导码符号相关联以检测来自发送设备的通信。 接收设备还可以包括校正逻辑,用于基于数据流中有效载荷的重复来从通信信号校正数据流。
    • 77. 发明申请
    • METHODS AND ARRANGEMENTS FOR PHASE TRACKING FOR MULTI-MODE OPERATION IN WIRELESS NETWORKS
    • 无线网络多模式操作的相位跟踪方法与安排
    • US20140185662A1
    • 2014-07-03
    • US13730996
    • 2012-12-29
    • Shahrnaz AziziEldad PerahiaThomas J. Kenney
    • Shahrnaz AziziEldad PerahiaThomas J. Kenney
    • H04L27/26
    • 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 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 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2MHz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1MHz带宽传输。 逻辑可以执行算法来确定给定的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 。
    • 79. 发明申请
    • METHODS AND ARRANGEMENTS FOR CHANNEL UPDATES IN WIRELESS NETWORKS
    • 无线网络中通道更新的方法和安排
    • US20140050254A1
    • 2014-02-20
    • US13730931
    • 2012-12-29
    • Shahrnaz AziziThomas J. KenneyEldad Perahia
    • Shahrnaz AziziThomas J. KenneyEldad Perahia
    • H04L27/26
    • H04L27/2666H04L5/0051H04L25/022H04L27/2647
    • Pilot logic may determine channel information updates such as channel state information and phase correction information from pilot tones that do not travel close to the DC tone or the band edge tones. Logic may skip channel updates and phase tracking from pilot tones that have traveled close to the DC tone or the edge tones. In other words, logic may process the shifting pilot tones except for the pilot tones located adjacent to the DC tone and the edge tones. Logic may use channel estimates and phase rotations that are obtained from previous locations of the pilot tones instead of pilot tones that are adjacent to the DC tone or the edge tones. Logic may access memory to store the channel information such as the phase correction information previously obtained and the channel state information previously obtained and derived from processing pilot tones at locations adjacent to the symbol indices next to the DC tone and the edge tones.
    • 导频逻辑可以确定频道信息更新,例如来自不接近DC音调或频带边缘音调的导频音调的信道状态信息和相位校正信息。 逻辑可以跳过频道更新和从已经行进接近直流音或边缘音调的导频音进行相位跟踪。 换句话说,逻辑可以处理除了与DC音调和边缘音调相邻的导频音调之外的移动导频音调。 逻辑可以使用从导频音调的先前位置获得的信道估计和相位旋转,而不是与DC音调或边缘音调相邻的导频音调。 逻辑可以访问存储器以存储信道信息,例如先前获得的相位校正信息和先前从与直流音和边缘音调相邻的符号索引处的导频音处理导出的信道状态信息。