能源可持续信息物理系统的能源管理策略

Yongqi Ge, Yunwei Dong, Hong-bing Zhao
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引用次数: 5

摘要

可持续计算为信息物理系统(CPS)中能源可持续计算的设计和验证提供了不同的方法。一个主要问题是如何设计能源管理策略,以确保能源计算的可持续性,同时计算过程和物理过程在CPS中继续相互作用。为了解决这一问题,一种解决方案是将能源管理策略建模为可再生资源产生的电力与工作负载的电力需求之间的平衡。以月球车系统的能量管理为例,提出了一种能量可持续CPS系统的动态功率平衡策略(DPBS),以保持太阳能电池阵列(SCA)输出功率、电池荷电状态(SOC)和工作负载功率需求之间的平衡。DPBS能够协调工作负载和电池的工作模式,保证月球车能量管理中能量计算的可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An energy management strategy for energy-sustainable Cyber-physical system
Sustainable computing provides different approaches towards design and verification of energy-sustainable computing in Cyber-physical system (CPS). A major issue is how to design energy management strategy for ensuring the sustainability of energy computing while the computation processes and physical processes are continued to interact in CPS. To solve this problem, one solution is to modeling the energy management strategy as the balance between power produced by renewable resources and power demand of workload. In this paper, the energy management of lunar rover system is taken as an example, and a dynamic power balance strategy (DPBS) for energy-sustainable CPS system is proposed to keep balance among the output power of solar cell array (SCA), the state of charge (SOC) of battery and the power demand of workload. The DPBS can coordinate the work mode of workload and batteries, and ensure the sustainability of energy computing for lunar rover energy management.
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