Energy management for plug-in hybrid electric vehicles based on road gradient
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摘要: 考慮道路坡度對整車驅動需求的影響,針對插電式混合動力汽車,提出基于道路坡度信息的插電式混合動力汽車能量管理策略,進行車載導航系統在整車能量管理策略中應用的初步探究.根據車載導航系統提供的道路信息,建立坡道行駛電量消耗預估模型,分別對行程中電量消耗階段和電量維持階段動力電池的荷電指數進行規劃,提出行車預充電時刻規劃準則,使車輛在坡道行駛前動力電池的荷電指數達到預定值,保證車輛在坡道行駛時不會因動力電池虧電造成動力不足或過放電有損動力電池的使用壽命,并在上坡行駛結束后動力電池的荷電指數下降到臨界值,有利于充分吸收制動回收的電能.利用MATLAB/Simulink仿真平臺,對提出的能量管理策略進行仿真驗證.本文所提出的基于坡道預測的能量管理策略能夠避免動力電池的過放電,確保車輛上坡行駛過程電量充足.Abstract: In consideration of the impact of road gradient on the vehicle driving demand,a predictive energy management strategy was proposed for plug-in hybrid electric vehicles(PHEVs) on the basis of road gradient provided by the vehicle navigation system.The knowledge of route data(trip distance,road gradient and altitude) was used to predict the electricity consumption. Then the state-of-charge(SOC) trajectory was planned for the charge depleting(CD) mode and the charge sustaining(CS) mode. With exact calculations of the charge timing,the SOC was charged to the target value before uphill and reached to the threshold after uphill in case of battery electricity shortage and over-discharge during uphill. The proposed adaptive SOC control strategy can improve the vehicle performance and is in favor of the full absorption of regenerative braking energy. Based on the MATLAB/Simulink platform,a simulation model was built for the plug-in hybrid electric system. The proposed energy management strategy based on road gradient prediction was verified to avoid battery over-discharge and to ensure sufficient electric energy during uphill.
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