提高能源收集嵌入式系统的能源效率

Yang Ge, Yukan Zhang, Qinru Qiu
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引用次数: 7

摘要

能量收集系统(EHS)在为嵌入式系统提供绿色能源的同时,也存在不确定性和采收率变化较大的问题。这种限制可以通过使用高效的能量存储来弥补。混合储能系统作为一种具有高功率转换效率和低自放电的低成本储能方法,近年来被提出。为了提高EHS/HEES嵌入式系统中电荷分配和替换的效率,提出了一种快速启发式算法。该算法的目标是在满足嵌入式工作负载的任务期限约束的同时,使DC-DC变换器的能量开销最小化,并使HEES系统中存储的能量最大化。我们首先提供了一个近似但准确的DC-DC转换器的功耗模型。基于该模型,可以解析求解出系统的最优工作点。与以前的方法相比,我们的算法与HEES库的动态重构相结合,提供了能源效率的提高和运行时开销的减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving energy efficiency for energy harvesting embedded systems
While the energy harvesting system (EHS) supplies green energy to the embedded system, it also suffers from uncertainty and large variation in harvesting rate. This constraint can be remedied by using efficient energy storage. Hybrid Electrical Energy Storage (HEES) system is proposed recently as a cost effective approach with high power conversion efficiency and low self-discharge. In this paper, we propose a fast heuristic algorithm to improve the efficiency of charge allocation and replacement in an EHS/HEES equipped embedded system. The goal of our algorithm is to minimize the energy overhead on the DC-DC converter while satisfying the task deadline constraints of the embedded workload and maximizing the energy stored in the HEES system. We first provide an approximated but accurate power consumption model of the DC-DC converter. Based on this model, the optimal operating point of the system can be analytically solved. Integrated with the dynamic reconfiguration of the HEES bank, our algorithm provides energy efficiency improvement and runtime overhead reduction compared to previous approaches.
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