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Capacity of Gaussian Channels With Energy Harvesting and Processing Cost

机译:高斯信道的容量与能量收集和处理成本

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Energy harvesting sensor nodes are gaining popularity due to their ability to improve the network life time and are becoming a preferred choice supporting green communication. In this paper, we focus on communicating reliably over an additive white Gaussian noise channel using such an energy harvesting sensor node. An important part of this paper involves appropriate modeling of energy harvesting, as done via various practical architectures. Our main result is the characterization of the Shannon capacity of the communication system. The key technical challenge involves dealing with the dynamic (and stochastic) nature of the (quadratic) cost of the input to the channel. As a corollary, we find close connections between the capacity achieving energy management policies and the queueing theoretic throughput optimal policies.
机译:能量收集传感器节点由于能够改善网络寿命而变得越来越受欢迎,并且正成为支持绿色通信的首选。在本文中,我们专注于使用这种能量收集传感器节点在加性高斯白噪声通道上可靠地通信。本文的重要部分涉及通过各种实际架构完成的适当的能量收集建模。我们的主要结果是表征通信系统的Shannon容量。关键的技术挑战涉及处理通道输入的(二次)成本的动态(和随机)性质。必然地,我们发现实现能源管理策略的容量与排队理论吞吐量最佳策略之间的紧密联系。

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