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Directional Space-Time Waveform Design for Interference-Avoiding MIMO Configurations

机译:避免MIMO配置的定向空时波形设计

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We consider the problem of directional space-time waveform design for proactive interference avoidance in multiple-input multiple-output (MIMO) link configurations. We propose to instruct the transmitter to communicate with the intended receiver at a given code sequence and angle-of-arrival that are jointly optimized to maximize the maximum attainable pre-detection signal-to-interference-plus-noise ratio (SINR). More specifically, directional transmissions to the intended receiver are achieved by designing space-time waveforms that maximize SINR at the output of the max-SINR receiver filter. Simulation of the proposed adaptive interference-avoiding space-time waveform designs in MIMO link configurations show superior performance in terms of post-filtering SINR and bit-error-rate (BER) when compared to interference-suppressive non-adaptive receiver designs. Joint optimization of the code sequence and array response vector at the transmitter demonstrate that the proposed spacetime waveform designs perform within 2 dB from the maximum attainable SINR at the intended receiver.
机译:我们考虑了在多输入多输出(MIMO)链路配置中主动避免干扰的定向时空波形设计问题。我们建议指示发送器以给定的代码序列和到达角度与目标接收器进行通信,这些代码序列和到达角度经过共同优化,以最大程度地实现最大的预检测信号与干扰加噪声比(SINR)。更具体地说,通过设计使max-SINR接收器滤波器的输出处的SINR最大化的时空波形,可以实现到预期接收器的定向传输。与抑制干扰的非自适应接收机设计相比,在MIMO链路配置中对拟议的自适应干扰避免时空波形设计的仿真显示出在后滤波SINR和误码率(BER)方面的优越性能。发射机处代码序列和阵列响应矢量的联合优化表明,建议的时空波形设计在预期接收机处的最大可获得SINR的2 dB之内执行。

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