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Adaptive Buffer-Aided Space-Time Coding for Multiple-Antenna Cooperative Wireless Networks

机译:多天线协作无线网络的自适应缓冲辅助空时编码

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In this work we propose an adaptive buffer-aided space-time coding scheme for cooperative wireless networks. A maximum likelihood receiver and adjustable code vectors are considered subject to a power constraint with an amplify-and-forward cooperation strategy. Each multiple-antenna relay is equipped with a buffer and is capable of storing the received symbols before forwarding them to the destination. We also present an adaptive relay selection and optimization algorithm, in which the instantaneous signal to noise ratio in each link is calculated and compared at the destination. An adjustable code vector obtained by a feedback channel at each relay is employed to form a space-time coded vector which achieves a higher coding gain than standard schemes. A stochastic gradient algorithm is developed to compute the parameters of the adjustable code vector with reduced computational complexity. Simulation results show that the proposed buffer-aided scheme and algorithm obtain performance gains over existing schemes.
机译:在这项工作中,我们提出了一种用于协作无线网络的自适应缓冲区辅助空时编码方案。最大似然接收器和可调码矢量被认为受到功率放大和转发合作策略的约束。每个多天线中继均配备有缓冲区,并能够在将接收到的符号转发到目的地之前存储它们。我们还提出了一种自适应中继选择和优化算法,其中在每个链路上计算瞬时信噪比并在目的地进行比较。由每个中继器上的反馈信道获得的可调代码向量被用来形成一个时空编码向量,该向量获得比标准方案更高的编码增益。开发了一种随机梯度算法,以降低计算复杂度来计算可调代码矢量的参数。仿真结果表明,所提出的缓冲区辅助方案和算法在性能上优于现有方案。

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