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Antenna placement and power allocation optimization in MIMO detection

机译:MIMO检测中的天线布置和功率分配优化

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摘要

It is a well known fact that using multiple antennas at transmit and receive sides improves the detection performance. However, in such multiple-input multiple-output (MIMO) configuration, proper positioning of transmitters and receivers is a big challenge that can have significant influence on the performance of the overall system. In addition, determining the power of each transmitter under a total power constraint is a problem that should be solved in order to enhance the performance and coverage of such a system. In this paper, we design the Neyman-Pearson detector under the Rayleigh scatter model and use it to introduce a criterion for the antenna placement at both transmit and receive sides. We then show that by using a waterfilling-type algorithm at the detector's output, optimum transmitter powers can be determined accordingly.
机译:众所周知的事实是,在发送和接收侧使用多个天线可以提高检测性能。但是,在这种多输入多输出(MIMO)配置中,正确放置发射器和接收器是一个很大的挑战,可能会对整个系统的性能产生重大影响。另外,在总功率约束下确定每个发射机的功率是必须解决的问题,以增强这种系统的性能和覆盖范围。在本文中,我们在瑞利散射模型下设计了Neyman-Pearson检测器,并使用它为发射侧和接收侧引入天线放置准则。然后,我们表明,通过在检测器的输出端使用注水型算法,可以相应地确定最佳发射器功率。

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