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An intelligent transmit power control and receive antenna selection scheme for uplink MIMO-transceiver in high mobility environments

机译:高移动性环境中上行MIMO收发器的智能发射功率控制和接收天线选择方案

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This study proposes a novel intelligent transmit power control and receive antenna selection (ITPCRAS) scheme to minimize the uplink power and co-channel interference in high-mobility communication environments with UL MIMO-SC-FDMA transceivers. In the proposed method, an ANFIS-based power controller (APC) is used to adjust the transmit power adaptively so as to minimize the user equipment (UE) transmit power while simultaneously satisfying BLER <;10_1 in extended vehicular A (EVA) channels with UE velocities in the range of 0 ~ 300 km/h. The throughput and power consumption of the ITPCRAS algorithm are compared numerically with that of an APC algorithm with various single-input single-output (SISO) and single-input multiple-output (SIMO) configurations.
机译:这项研究提出了一种新颖的智能发射功率控制和接收天线选择(ITPCRAS)方案,以最大程度地降低使用UL MIMO-SC-FDMA收发器的高移动通信环境中的上行链路功率和同信道干扰。在提出的方法中,基于ANFIS的功率控制器(APC)用于自适应地调节发射功率,以最小化用户设备(UE)的发射功率,同时在扩展的车载A(EVA)信道中满足BLER <; 10_1。 UE速度在0〜300 km / h的范围内。将ITPCRAS算法的吞吐量和功耗与具有各种单输入单输出(SISO)和单输入多输出(SIMO)配置的APC算法进行了数值比较。

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