Improvements in fuel consumption and emissions of hybrid electric vehicle(HEV)heavily depend upon an efficient energy management strategy(EMS).This paper presents an optimizing fuzzy control strategy of parallel hybri...Improvements in fuel consumption and emissions of hybrid electric vehicle(HEV)heavily depend upon an efficient energy management strategy(EMS).This paper presents an optimizing fuzzy control strategy of parallel hybrid electric vehicle em-展开更多
针对装备精确维修需求,应用平行仿真技术,提出一种装备精确维修的平行仿真系统(parallel simulation system of equipment precision maintenance,PSSEPM)架构。首先建立与装备对应的仿真系统,此时的仿真模型并不精确,仿真系统与装备同...针对装备精确维修需求,应用平行仿真技术,提出一种装备精确维修的平行仿真系统(parallel simulation system of equipment precision maintenance,PSSEPM)架构。首先建立与装备对应的仿真系统,此时的仿真模型并不精确,仿真系统与装备同时运行后,通过装备实时状态信息的"喂养",利用演化算法,使得在一定误差范围内仿真系统的输出与实际装备真实状态相一致,达到平行状态,进而基于已演化完毕的仿真系统利用快速仿真方法预测装备未来的健康状态和故障状态,为精确维修决策提供数据支持,最后介绍了PSSEPM涉及的关键技术。展开更多
基金supported by the Natural Science Foundation of Hubei Province(Grant No.2015CFB586)
文摘Improvements in fuel consumption and emissions of hybrid electric vehicle(HEV)heavily depend upon an efficient energy management strategy(EMS).This paper presents an optimizing fuzzy control strategy of parallel hybrid electric vehicle em-
文摘针对装备精确维修需求,应用平行仿真技术,提出一种装备精确维修的平行仿真系统(parallel simulation system of equipment precision maintenance,PSSEPM)架构。首先建立与装备对应的仿真系统,此时的仿真模型并不精确,仿真系统与装备同时运行后,通过装备实时状态信息的"喂养",利用演化算法,使得在一定误差范围内仿真系统的输出与实际装备真实状态相一致,达到平行状态,进而基于已演化完毕的仿真系统利用快速仿真方法预测装备未来的健康状态和故障状态,为精确维修决策提供数据支持,最后介绍了PSSEPM涉及的关键技术。