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Distributed Transmitter Optimization for the Wyner-Type Downlink via Belief Propagation

机译:通过信度传播为Wyner型下行链路进行分布式发射机优化

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摘要

We study a Wyner-type downlink network, where any two adjacent base stations (BSs) can communicate with each other and cooperate on transmission of discrete data symbols to their intended mobile stations (MSs) situated along a circular array. With focus on the binary case, we take the symbol detection point of view and formulate a novel non-linear precoding optimization problem by imposing minimum Symbol Error Probabilities as Quality-of-Service constraints at MSs. We then cast the problem into a factor graph and propose a belief propagation (BP) framework to solve the problem in a distributed manner based on only local communication between adjacent BSs. Numerical results confirm the convergence of the distributed algorithm and demonstrate the transmit power saving from the proposed precoder over two state-of-the-art linear precoders. To the best of our knowledge, this is the first work that leverages the BP method for non-linear precoding.
机译:我们研究了Wyner型下行链路网络,在该网络中,任意两个相邻的基站(BS)都可以相互通信,并且可以在将离散数据符号传输到沿环形阵列的目标移动台(MS)上进行协作。着眼于二进制情况,我们从符号检测的角度出发,通过将最小符号错误概率作为MS的服务质量约束,来提出一种新颖的非线性预编码优化问题。然后,我们将该问题转换为因子图,并提出了一种信念传播(BP)框架,以仅基于相邻BS之间的本地通信以分布式方式解决该问题。数值结果证实了分布式算法的收敛性,并证明了所提出的预编码器在两个最新的线性预编码器上节省了发射功率。据我们所知,这是第一项利用BP方法进行非线性预编码的工作。

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