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Energy management of DVS-DPM enabled embedded systems powered by fuel cell-battery hybrid source

机译:由燃料电池-电池混合动力源驱动的支持DVS-DPM的嵌入式系统的能源管理

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Dynamic voltage scaling (DVS) and dynamic power management (DPM) are the two main techniques for reducing the energy consumption of embedded systems. The effectiveness of both DVS and DPMneeds to be considered in the development of an energy management policy for a system that consists of both DVS-enabled and DPM-enabled components. The characteristics of the power source also have to be explicitly taken into account. In this paper, we propose a policy to maximize the operational lifetime of a DVS-DPM enabled embedded system powered by a fuel cell-battery (FC-B) hybrid source. We show that the lifetime of the system is determined by the fuel consumption of the fuel cell (FC), and that the fuel consumption can be minimized by a combination of a load energy minimization policy and an optimal fuel flow control policy. The proposed method, when applied to a randomized task trace, demonstrated superior performance compared to competing policies based on DVS and/or DPM.
机译:动态电压缩放(DVS)和动态电源管理(DPM)是减少嵌入式系统能耗的两种主要技术。在开发由启用了DVS的组件和启用DPM的组件组成的系统的能源管理策略时,需要考虑DVS和DPM的有效性。还必须明确考虑电源的特性。在本文中,我们提出了一种策略,以最大限度地延长由燃料电池-电池(FC-B)混合动力源驱动的支持DVS-DPM的嵌入式系统的使用寿命。我们表明,系统的寿命取决于燃料电池(FC)的燃料消耗,并且可以通过结合负载能量最小化策略和最佳燃料流控制策略来最小化燃料消耗。与基于DVS和/或DPM的竞争策略相比,所提出的方法应用于随机任务跟踪时,表现出卓越的性能。

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