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contributor authorHongwen He
contributor authorXuechao Wang
contributor authorJinzhou Chen
contributor authorYa-Xiong Wang
date accessioned2022-01-30T21:41:06Z
date available2022-01-30T21:41:06Z
date issued12/1/2020 12:00:00 AM
identifier other%28ASCE%29EY.1943-7897.0000708.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4268661
description abstractThis paper focuses on a proton-exchange membrane (PEM) fuel cell/electrolyzer-based regenerative hybrid power system modeling and energy management for automotive application. In the regenerative hybrid power system, the fuel cell acts as the main power, and the battery, supercapacitor, and electrolyzer consist of a hybrid energy storage system (HESS) to provide and/or reclaim the extra power. To effectively distribute the hybrid power, the load power demand of the automobile is handled by using the wavelet transform based on the power change rate. The supercapacitor copes with the high power change rate load demand, and the low-slope portion is balanced by the fuel cell/electrolyzer and battery. To reduce the fuel consumption online, an improved rule-based energy management strategy (EMS) depending on dynamic programming (DP) allocation of fuel cell power and battery state of charge (SOC) is developed, and an electrolyzer operation strategy is also designed. The numerical simulation is implemented to test the proposed rule-based EMS, and the results indicate that the real-time control keeping 93.8% fuel consumption performance compared with the off-line global optimization solution in a given driving cycle.
publisherASCE
titleRegenerative Fuel Cell-Battery-Supercapacitor Hybrid Power System Modeling and Improved Rule-Based Energy Management for Vehicle Application
typeJournal Paper
journal volume146
journal issue6
journal titleJournal of Energy Engineering
identifier doi10.1061/(ASCE)EY.1943-7897.0000708
page11
treeJournal of Energy Engineering:;2020:;Volume ( 146 ):;issue: 006
contenttypeFulltext


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