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Optimal Harvest-Use-Store Strategy for Energy Harvesting Wireless Systems

机译:能量收集无线系统的最佳收集-使用-存储策略

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摘要

Energy harvesting (EH) technology has emerged as a promising energy-supplier to unattended wireless systems. In the commonly used harvest-store-use (HSU) scheme, harvested energy is always stored in a battery before its subsequent use. The existence of storage loss in practical battery systems, however, unavoidably reduces the energy efficiency. In this paper, we therefore propose the use of a more efficient harvest-use-store (HUS) architecture for point-to-point data transmission, where the harvested energy is prioritized for use in data transmission while its balance/debt is stored in or extracted from the storage device. We derive the optimal energy polices, under the criterion of throughput maximization, for the HUS architecture on static and block fading channels, and investigate the properties of the resulting power allocation pattern. The optimization is done in the Lagrangian framework, uncovering the special structure of the optimal power pattern and obtaining a closed-form solution conditioned on the knowledge of the block locations for zero battery level. A dynamic programming (DP) based algorithm is developed for locating such blocks in the optimal power patterns. Numerical results are presented to demonstrate the properties of the proposed HUS architecture and its superior performance over the existing schemes.
机译:能量收集(EH)技术已经成为无人值守无线系统的有希望的能量提供者。在通常使用的“收割-储存-使用”(HSU)方案中,收割的能量总是在其后续使用之前存储在电池中。然而,实际电池系统中存在存储损耗不可避免地降低了能量效率。因此,在本文中,我们建议使用更有效的收割存储(HUS)架构进行点对点数据传输,其中将收割的能量优先用于数据传输,同时将其余额/债务存储在或从存储设备中提取。我们根据吞吐量最大化的准则,为静态和块衰落信道上的HUS体系结构推导了最佳能量策略,并研究了所得功率分配模式的特性。优化是在拉格朗日框架中完成的,揭示了最佳功率模式的特殊结构,并获得了基于零电池电量的块位置知识的闭式解。开发了一种基于动态编程(DP)的算法,用于以最佳功率模式定位此类块。数值结果表明了所提出的HUS体系结构的特性及其优于现有方案的性能。

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