以重型串联式液压混合动力汽车为研究对象,提出了基于规则的能量管理策略,并对整车设计了4种工作模式。搭建了其Matlab/Simulink整车仿真模型,对液压混合动力车辆总需求功率、发动机功率、液压系统回收功率、蓄能器流量、SOC(State of C...以重型串联式液压混合动力汽车为研究对象,提出了基于规则的能量管理策略,并对整车设计了4种工作模式。搭建了其Matlab/Simulink整车仿真模型,对液压混合动力车辆总需求功率、发动机功率、液压系统回收功率、蓄能器流量、SOC(State of Charge)等参数进行了仿真,分析对比了传统汽车和液压混合动力汽车发动机扭矩工作点。仿真结果表明:液压混合动力汽车发动机和液压系统提供的功率可以满足总需求功率要求,其燃油经济性显著提高,SOC保持在合理范围内,发动机工作平稳,所设计的能量管理策略可靠有效。展开更多
A series-parallel hydraulic hybrid system applied to public buses is put torwaro, ano parameters of key components are analyzed and determined. Energy management strategy based on logic thresh- old is designed which i...A series-parallel hydraulic hybrid system applied to public buses is put torwaro, ano parameters of key components are analyzed and determined. Energy management strategy based on logic thresh- old is designed which is aimed at efficient operation of the overall system considering the operational characteristic of the components and taking the curves of engine, hydraulic pump/motor and hydrau- lic pump as the main design basis; regenerative control strategy which makes regenerative brake sys- tem and frictional brake system work harmoniously is designed to raise recovery rate of regenerative brake energy. System dynamic modeling and simulation results show that the energy control strategy designed here is able to adapt system to changes of working condition and switch the operating mode reasonably. The regenerative braking control strategy is effective in raising the utilization of energy and improving fuel economy.展开更多
The theory of limit cycles was applied to hydraulic hybrid vehicle (HHV) to analyze the dynamic characteristics of the system. The exact mathematical models based on configuration diagram of HHV were built to study on...The theory of limit cycles was applied to hydraulic hybrid vehicle (HHV) to analyze the dynamic characteristics of the system. The exact mathematical models based on configuration diagram of HHV were built to study on equilibrium points, nonexistence of limit cycle and stability of equilibrium points. The analysis showed that if the Young's modulus of fluid is neglected, the equilibrium points of the system will be distributed on both sides of the initial function. In addition, there is a unique equilibrium point according to the practical signification of the system parameters. The nonexistence analysis showed that there is no limit cycle for the system, no matter how the viscosity coefficient B changes. The stability analysis of equilibrium points showed that the system is asymptotically stable about the equilibrium point at B≥0 and the equilibrium point is the center point of the system at B=0. Finally, the phase diagrams of global topological structure of HHV system were entirely described according to qualitative analysis of the singular points at infinity.展开更多
文摘以重型串联式液压混合动力汽车为研究对象,提出了基于规则的能量管理策略,并对整车设计了4种工作模式。搭建了其Matlab/Simulink整车仿真模型,对液压混合动力车辆总需求功率、发动机功率、液压系统回收功率、蓄能器流量、SOC(State of Charge)等参数进行了仿真,分析对比了传统汽车和液压混合动力汽车发动机扭矩工作点。仿真结果表明:液压混合动力汽车发动机和液压系统提供的功率可以满足总需求功率要求,其燃油经济性显著提高,SOC保持在合理范围内,发动机工作平稳,所设计的能量管理策略可靠有效。
基金Supported by the National Natural Science Foundation of China(No.50875054)Weihai Science and Technology Development Plan Project(No.2012DXGJ13)
文摘A series-parallel hydraulic hybrid system applied to public buses is put torwaro, ano parameters of key components are analyzed and determined. Energy management strategy based on logic thresh- old is designed which is aimed at efficient operation of the overall system considering the operational characteristic of the components and taking the curves of engine, hydraulic pump/motor and hydrau- lic pump as the main design basis; regenerative control strategy which makes regenerative brake sys- tem and frictional brake system work harmoniously is designed to raise recovery rate of regenerative brake energy. System dynamic modeling and simulation results show that the energy control strategy designed here is able to adapt system to changes of working condition and switch the operating mode reasonably. The regenerative braking control strategy is effective in raising the utilization of energy and improving fuel economy.
基金supported by the National Natural Science Foundation of China (Grant No. 50475011)
文摘The theory of limit cycles was applied to hydraulic hybrid vehicle (HHV) to analyze the dynamic characteristics of the system. The exact mathematical models based on configuration diagram of HHV were built to study on equilibrium points, nonexistence of limit cycle and stability of equilibrium points. The analysis showed that if the Young's modulus of fluid is neglected, the equilibrium points of the system will be distributed on both sides of the initial function. In addition, there is a unique equilibrium point according to the practical signification of the system parameters. The nonexistence analysis showed that there is no limit cycle for the system, no matter how the viscosity coefficient B changes. The stability analysis of equilibrium points showed that the system is asymptotically stable about the equilibrium point at B≥0 and the equilibrium point is the center point of the system at B=0. Finally, the phase diagrams of global topological structure of HHV system were entirely described according to qualitative analysis of the singular points at infinity.