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Distributed Sum-Rate Optimization for Full-Duplex MIMO System Under Limited Dynamic Range

机译:有限动态范围下全双工MIMO系统的分布式总和速率优化

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Distributed sum-rate-maximizing covariance matrices design for full-duplex multi-input multi-output communication is considered, where the information of the loopback interference channels cannot be exchanged reliably due to their large dynamic ranges. We propose a structured covariance matrices design which finds the optimal balance between the two solutions in the extremes of the weak and strong self-interference through a single-parameter optimization. We further propose a low-complexity null projection matrix design algorithm, in which the solution in the strong self-interference regime is designed in the sense to maximize the received channel gain. Exploiting the well-posed structure, the proposed scheme nearly achieves the sum-rate of the previous scheme based on the gradient projection with significantly less amount of inter-node iterations, yielding an increased effective sum-rate and reduced overall complexity for the practial channel block lengths.
机译:考虑了全双工多输入多输出通信的分布式和率最大化协方差矩阵设计,其中回送干扰信道的信息由于其较大的动态范围而无法可靠地交换。我们提出了一种结构化协方差矩阵设计,该结构可以通过单参数优化在弱和强自干扰的极端情况下找到两种解决方案之间的最佳平衡。我们进一步提出了一种低复杂度的零投影矩阵设计算法,该算法在某种程度上设计了强自干扰机制的解决方案,以最大程度地提高接收到的信道增益。利用良好的结构,所提出的方案几乎基于梯度投影实现了先前方案的求和率,而节点间迭代的次数却大大减少,从而提高了有效求和率并降低了实用信道的整体复杂性块长度。

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