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首页> 外文期刊>ACM Transactions on Design Automation of Electronic Systems >A Fuel-Cell-Battery Hybrid for Portable Embedded Systems
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A Fuel-Cell-Battery Hybrid for Portable Embedded Systems

机译:用于便携式嵌入式系统的燃料电池混合动力车

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摘要

This article presents our work on the development of a fuel cell (FC) and battery hybrid (FC-Bh) system for use in portable microelectronic systems. We describe the design and control of the hybrid system, as well as a dynamic power management (DPM)-based energy management policy that extends its operational lifetime. The FC is of the proton exchange membrane (PEM) type, operates at room temperature, and has an energy density which is 4-6 times that of a Li-ion battery. The FC cannot respond to sudden changes in the load, and so a system powered solely by the FC is not economical. An FC-Bh power source, on the other hand, can provide the high energy density of the FC and the high power density of a battery. In this work we first describe the prototype FC-Bh system that we have built. Such a prototype helps to characterize the performance of a hybrid power source, and also helps explore new energy management strategies for embedded systems powered by hybrid sources. Next we describe a Matlab/Simulink-based FC-Bh system simulator which serves as an alternate experimental platform and that enables quick evaluation of system-level control policies. Finally, we present an optimization framework that explicitly considers the characteristics of the FC-Bh system and is aimed at minimizing the fuel consumption. This optimization framework is applied on top of a prediction-based DPM policy and is used to derive a new fuel-efficient DPM scheme. The proposed scheme demonstrates up to 32% system lifetime extension compared to a competing scheme when run on a real trace-based MPEG encoding example.
机译:本文介绍了我们在便携式微电子系统中使用的燃料电池(FC)和电池混合动力(FC-Bh)系统的开发工作。我们描述了混合动力系统的设计和控制,以及基于动态功率管理(DPM)的能源管理策略,该策略可延长其使用寿命。 FC是质子交换膜(PEM)类型的,在室温下运行,能量密度是锂离子电池的4-6倍。 FC无法响应负载的突然变化,因此仅由FC供电的系统不经济。另一方面,FC-Bh电源可以提供FC的高能量密度和电池的高功率密度。在这项工作中,我们首先描述我们构建的原型FC-Bh系统。这样的原型有助于表征混合电源的性能,还有助于探索由混合电源供电的嵌入式系统的新能源管理策略。接下来,我们描述基于Matlab / Simulink的FC-Bh系统仿真器,该系统仿真器用作备用实验平台,可以快速评估系统级控制策略。最后,我们提出了一个优化框架,该框架明确考虑了FC-Bh系统的特性,旨在最大程度地减少燃料消耗。该优化框架被应用在基于预测的DPM策略之上,并用于推导新的省油DPM方案。当在基于真实轨迹的MPEG编码示例上运行时,与竞争方案相比,所提出的方案展示了高达32%的系统寿命扩展。

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