并联式混合动力汽车(Parallel Hybrid Electric Vehicle,PHEV)档位决策作为能量管理策略的一部分,对整车动力性、经济性及排放性能有较大影响.混合动力汽车换档策略不仅要考虑发动机,还要考虑电机和电池系统的影响.基于电池电能的等效...并联式混合动力汽车(Parallel Hybrid Electric Vehicle,PHEV)档位决策作为能量管理策略的一部分,对整车动力性、经济性及排放性能有较大影响.混合动力汽车换档策略不仅要考虑发动机,还要考虑电机和电池系统的影响.基于电池电能的等效燃油概念,通过考虑电池充、放电过程中的能量损失,将充、放电生成或消耗的电能折算为等效燃油,由此得到不同档位时整车的综合燃油消耗,进而选取燃油消耗较小时的档位使整车经济性能指标达到最优.同时,该方法也通用于装备液力自动变速器(Automatic Transmission,AT)等有级式自动变速器的混合动力汽车换档策略制定.展开更多
For the purpose of engineering development for a new 8-step speed automatic transmission,a simplified dynamic model for this gearbox was established and key parameters which affected the shift quality were analyzed.Ai...For the purpose of engineering development for a new 8-step speed automatic transmission,a simplified dynamic model for this gearbox was established and key parameters which affected the shift quality were analyzed.Aiming at four different shift types,the ideal characteristics of shift clutch and engine control were set up.By using torque estimation method,PI slip control algorithm and engine coordinated control principle,the control model and transmission controller were well developed for three shift phases which included rapid-fill phase,torque phase and inertia phase.The testing environment on the rig and prototype vehicle level was built and the testing results obtained in ultimate condition could verify the accuracy and feasibility of this shift control strategy.The peak jerk during shift process was controlled within ±2 g/s where the smooth gearshift was obtained.The development proposal and algorithm have a high value for engineering application.展开更多
文摘并联式混合动力汽车(Parallel Hybrid Electric Vehicle,PHEV)档位决策作为能量管理策略的一部分,对整车动力性、经济性及排放性能有较大影响.混合动力汽车换档策略不仅要考虑发动机,还要考虑电机和电池系统的影响.基于电池电能的等效燃油概念,通过考虑电池充、放电过程中的能量损失,将充、放电生成或消耗的电能折算为等效燃油,由此得到不同档位时整车的综合燃油消耗,进而选取燃油消耗较小时的档位使整车经济性能指标达到最优.同时,该方法也通用于装备液力自动变速器(Automatic Transmission,AT)等有级式自动变速器的混合动力汽车换档策略制定.
基金Project(51105017) supported by the National Natural Science Foundation of ChinaProject(2011BAG09B00) supported by the National Science and Technology Support Program of ChinaProject(2010DFB80020) supported by the Technology Major Project of the Ministry of Science and Technology of China
文摘For the purpose of engineering development for a new 8-step speed automatic transmission,a simplified dynamic model for this gearbox was established and key parameters which affected the shift quality were analyzed.Aiming at four different shift types,the ideal characteristics of shift clutch and engine control were set up.By using torque estimation method,PI slip control algorithm and engine coordinated control principle,the control model and transmission controller were well developed for three shift phases which included rapid-fill phase,torque phase and inertia phase.The testing environment on the rig and prototype vehicle level was built and the testing results obtained in ultimate condition could verify the accuracy and feasibility of this shift control strategy.The peak jerk during shift process was controlled within ±2 g/s where the smooth gearshift was obtained.The development proposal and algorithm have a high value for engineering application.