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Optimized partial decoding in uplink network MIMO under constraint backhaul

机译:在约束回程下的上行链路网络MIMO中优化的部分解码

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This paper considers the model that each base station (BS) is connected to a central processor (CP) via a noiseless and rate-limited backhaul link. The theoretical capacity of this model is still left open. In our work, we use data splitting to explore the achievable rate region under given capacities of backhaul links. The performance of the data splitting is analyzed, and the optimal power allocation can be derived by solving the Karush-Kuhn-Tucker (KKT) conditions. An optimization method is also used to obtain the boundary of achievable rate region instead of complex exhaustive search. In the numerical simulations, the boundary of achievable rate region is presented. The result reveals that the rate region of the proposed scheme is superior to that of joint decoding scheme and Interference Channel (IC). The sum rate of our proposed scheme is also larger than that of the other two schemes.
机译:本文考虑通过无噪声和速率限制回程链路连接每个基站(BS)连接到中央处理器(CP)的模型。该模型的理论能力仍然留下。在我们的工作中,我们使用数据拆分来探索在给定的回程链路的能力下实现可实现的速率区域。分析数据分离的性能,并且可以通过求解karush-kuhn-tucker(kkt)条件来导出最佳功率分配。优化方法还用于获得可实现的速率区域的边界,而不是复杂的详尽搜索。在数值模拟中,提出了可实现的速率区域的边界。结果表明,所提出的方案的速率区域优于联合解码方案和干扰通道(IC)的速率区域。我们拟议方案的总和率也大于其他两种方案的总和。

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