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Optimal power allocation for a wireless multi-antenna energy harvesting node with arbitrary input distribution

机译:具有任意输入分布的无线多天线能量采集节点的最佳功率分配

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The lifetime of autonomous wireless nodes can be extended by using energy harvesters in the node. This additional source of energy implies a loss of optimality of the traditional transmission strategies such as waterfilling. In this paper, the precoding strategy along N independent channel uses that maximizes the mutual information in linear vector Gaussian channels for arbitrarily distributed inputs is studied, under non-causal knowledge of the harvested energy over time. Precisely, the optimal right singular vectors and singular values of each precoder are derived. The derivation of the left singular vectors is a computationally hard problem, similarly as in the case of non-harvesting nodes, and is left as an open problem. At each channel use, the observed channel is diagonalized and power is allocated following the proposed MIMO Mercury Water-Flowing solution.
机译:可以通过在节点中使用能量收集器来延长自主无线节点的寿命。这种额外的能源意味着传统的输水策略(例如注水)的最优性丧失。本文研究了基于N个独立通道的预编码策略,该方法在不因果地了解随时间变化的能量的情况下,研究了线性向量高斯通道中任意分配输入的互信息最大化。精确地,得出每个预编码器的最优右奇异矢量和奇异值。与非收获节点的情况类​​似,左奇异矢量的推导是一个计算上的难题,并且是一个开放问题。在每次使用信道时,将观测到的信道对角线化,并根据提出的MIMO Mercury Water-Flowing解决方案分配功率。

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