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    • 9. 发明授权
    • Methods and systems for transmitting an information signal in a multiple antenna communication system
    • 用于在多天线通信系统中发送信息信号的方法和系统
    • US08351988B2
    • 2013-01-08
    • US13236141
    • 2011-09-19
    • Geert Arnout AwaterD. J. Richard Van Nee
    • Geert Arnout AwaterD. J. Richard Van Nee
    • H04M1/00
    • H04B7/0615H04B7/0854
    • Methods and systems are provided for transmitting a plurality of information signals in a multiple antenna communication system. One or more information signals are coded using a plurality of coders to generate the plurality of coded information signals and an Inverse Fast Fourier Transformation is performed on each of the plurality of coded information signals to create a corresponding output signal. Each of the corresponding output signals are transmitted on a different antenna. Each of the plurality of coded information signals can optionally be separated into K signals. On the receiver side, a signal comprising K different frequencies is received on at least N receive antennas and a Fast Fourier Transformation is applied to each of the at least N received versions of the signal comprising K different frequencies to generate N*K low frequency signals. The N*K separate low frequency signals are then combined to recover a transmitted information signal, based on one or more transfer functions from each of a plurality of transmit antennas to each of the N receive antennas.
    • 提供了用于在多天线通信系统中发送多个信息信号的方法和系统。 使用多个编码器对一个或多个信息信号进行编码,以生成多个编码信息信号,并且对多个编码信息信号中的每一个执行反快速傅立叶变换以产生相应的输出信号。 每个相应的输出信号在不同的天线上传输。 多个编码信息信号中的每一个可以可选地分离成K个信号。 在接收机侧,在至少N个接收天线上接收包含K个不同频率的信号,并且将快速傅里叶变换应用于包括K个不同频率的信号的至少N个接收版本中的每一个,以产生N * K个低频信号 。 然后,组合N * K个分离低频信号,以便基于从多个发射天线中的每一个到N个接收天线中的每一个的一个或多个传输函数来恢复所发送的信息信号。
    • 10. 发明授权
    • Decoding techniques for multi-antenna systems
    • US08416890B2
    • 2013-04-09
    • US12404433
    • 2009-03-16
    • Geert Arnout AwaterD. J. Richard Van Nee
    • Geert Arnout AwaterD. J. Richard Van Nee
    • H04L27/06
    • H04L27/36H04L2025/0342H04L2025/03426
    • In one embodiment, a wireless device for a wireless data communication system including the wireless device and a base station. The base station includes a plurality of first groups and a signal-processing unit. Each first group includes a receiver and at least one antenna connected to the receiver. The signal-processing unit includes memory and a processor adapted to process signals received by the first groups using a Maximum Likelihood Detection (MLD) method. The wireless device includes a plurality of second groups, each second group adapted to transmit a wireless signal to at least one first group via a corresponding communication channel. Each second group further includes a transmitter and at least one antenna connected to the transmitter. The signal-processing unit is adapted to store, in the memory, information corresponding to one or more transfer functions, each transfer function corresponding to transmission of a wireless signal from an antenna of the second groups to an antenna of the first groups. The transmitters and receivers are adapted to operate at essentially the same frequency or frequency band. Two or more of the communication channels are generated simultaneously. Each transmitter is adapted to modulate an information signal on a radio-frequency signal according to a Quadrature Amplitude Modulation (QAM) method to transmit QAM symbols. Each receiver is adapted to demodulate information signals from a received radio-frequency signal according to the QAM method.