Joint Energy Management for Distributed Energy Harvesting Systems

Naomi Stricker, Yingzhao Lian, Yuning Jiang, Colin N. Jones, L. Thiele
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引用次数: 6

Abstract

Employing energy harvesting to power the Internet of Things supports their long-term, self-sustainable, and maintenance-free operation. These energy harvesting systems have an energy management subsystem to orchestrate the flow of energy and optimize their achievable system performance. Numerous such algorithms for a single harvesting-based system have been proposed. When envisioning the joint use of multiple distributed energy harvesting nodes in a single application, the performance and behavior of the distributed system depends on the mutual energy availability and therefore energy management of all nodes. We propose to perform the energy management of multiple distributed energy harvesting nodes jointly and thus, optimize the distributed system's performance as opposed to the performance of each energy harvesting node individually. We demonstrate the novel joint optimization in a scenario with multiple energy harvesting nodes and observe that the distributed system's performance improves by 28 % compared to when each node's energy is managed individually.
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分布式能量收集系统的联合能量管理
利用能量收集为物联网提供动力,支持其长期、自我可持续和免维护的运行。这些能量收集系统有一个能量管理子系统来协调能量流并优化其可实现的系统性能。对于单个基于采集的系统,已经提出了许多这样的算法。当设想在单个应用程序中联合使用多个分布式能量收集节点时,分布式系统的性能和行为取决于相互的能量可用性,因此取决于所有节点的能量管理。我们建议联合多个分布式能量收集节点进行能量管理,从而优化分布式系统的性能,而不是单个能量收集节点的性能。我们在一个有多个能量收集节点的场景中演示了这种新的联合优化,并观察到与单独管理每个节点的能量相比,分布式系统的性能提高了28%。
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