基于Flowmaster与Simulink的发动机冷却系统变论域模糊控制  被引量:1

Variable Universe Fuzzy Control of Engine Cooling System Based on Flowmaster and Simulink

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作  者:程鑫[1,2] 夏一恒 刘一鹏 彭程 CHENG Xin;XIA Yiheng;LIU Yipeng;PENG Cheng(School of Mechanical and Electronic Engineering,Wuhan University of Technology,Wuhan 430070,China;Hubei Provincial Engineering Technology Research Center for Magnetic Suspension,Wuhan University of Technology,Wuhan 430070,China)

机构地区:[1]武汉理工大学机电工程学院,湖北武汉430070 [2]湖北省磁悬浮工程技术研究中心,湖北武汉430070

出  处:《数字制造科学》2022年第4期263-268,281,共7页

摘  要:针对汽车运行过程中工况的多变,以及模糊控制的局限性等问题,以提高冷却液温度控制精度和稳定性为目标,提出一种变论域模糊控制的电子水泵控制策略。在Flowmaster中建立发动机冷却系统的一维稳态模型,通过Flowmaster Interface模块传递转速和温度信号,与Simulink建立联合仿真。仿真结果表明,相较于模糊控制,变论域模糊控制能使冷却液温度更快地到达目标温度,快速性提升了11.57%,在目标温度偏差±0.5℃范围内的时间增加了11.96%,且冷却液温度波动幅度减小了40.97%。Considering the various vehicle working conditions and the limitation of fuzzy control,this paper proposes a controlling strategy of electronic water pump based on variable universe fuzzy control,aiming at improving the accuracy and stability of coolant temperature control.A one-dimensional steady-state model of engine cooling system is established in Flowmaster.The speed and temperature signals are transmitted through Flowmaster Interface module,and the co-simulated with Simulink.The results show that the developed controlling strategy can enable faster response of controlling of the coolant temperature by 11.57%.The time within the target temperature deviation range of±0.5℃is stretched by 11.96%,while the fluctuating amplitude of the coolant temperature is reduced by 40.97%.

关 键 词:发动机冷却系统 电子水泵 联合仿真 温度控制精度 变论域模糊控制 

分 类 号:U464.138[机械工程—车辆工程] TP273[交通运输工程—载运工具运用工程]

 

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