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1.
四轮驱动混合动力汽车动力系统设计   总被引:5,自引:0,他引:5  
根据混合动力系统零部件选型设计原则和整车在运行条件下的功率、扭矩需求,确定了动力系统的发动机、SSG、轮毂电机和蓄电池的性能参数,并进行了优化匹配、建模仿真和道路试验。结果表明,所设计的混合动力系统可满足整车的性能要求,所述方法和所得结果为混合动力系统的设计提供了理论基础。  相似文献   

2.
由于续驶里程的限制,目前为止,纯电动汽车比较适合在城市内短距离使用,同时需要对城市行驶有较强的适应性。文章基于对美国城市驾驶循环工况的分析,提出了纯电动汽车关键零部件的选型方法及要求,并根据该方法以及整车参数,对电驱动系统的峰值工作特性、能源存储系统的容量以及充放电特性等参数进行了合理的选择。最后对整车关键部件的选型结果进行了仿真验证。结果表明,所选择的方法满足设计要求,该方法可以作为城市行驶纯电动汽车动力系统选型的一种参考方法。  相似文献   

3.
文章以某款混合动力汽车为研究对象,确定整车性能目标,根据车辆具体参数对发动机、电机、电池等动力系统主要部件参数进行计算与选型,设计了电控机械式自动变速器(AMT)和机械式无级变速器(CVT)两种传动方案;在Cruise软件中构建仿真模型,测试最高车速、加速度、爬坡度等动力性指标;使用新欧洲驾驶循环(NEDC)工况进行经济性仿真对比测试不同传动方案对油耗的影响。仿真结果表明,整车动力性满足要求,动力系统参数选择合理,CVT传动方案发动机运行效率更高。  相似文献   

4.
介绍CKZ6126HENV3气电混合动力客车混合动力系统基本结构及控制策略,阐述天然气发动机、ISG电机、动力锂电池以及自动离合器等关键零部件的选型设计,分析仿真计算及整车试验结果。  相似文献   

5.
田超贺  张昕  张欣 《北京汽车》2011,(4):5-8,11
文中对可充电式混合动力电动汽车进行了研究。通过对可充电式混合动力电动汽车动力系统进行分析,综合动力性和经济性的设计要求。对动力系统的主要部件进行了选型。确定了电机、发动机、动力电池等参数。利用Matlab/Simulink和Advisor软件对整车性能进行了仿真。仿真结果表明所确定的动力系统参数达到了汽车动力性和经济性的设计要求。为后期的研发工作奠定了基础。  相似文献   

6.
为了提高城市公交客车的燃油经济性,针对城市公交客车行驶工况的特点,提出一种功率平衡型的增程式公交客车动力系统设计方案,并对其动力系统零部件(主驱动电机、增程器、动力电池)进行了选型计算。基于AVL-Cruise仿真平台,采用增程器定点能量管理策略,对设计的动力系统的燃油经济性和动力性进行了仿真分析。仿真结果表明,提出的动力系统能够满足整车动力性能要求,并在4种不同城市工况下的百公里油耗平均水平较传统柴油客车降低了30.1%。  相似文献   

7.
发动机热管理系统试验和仿真研究   总被引:6,自引:0,他引:6  
模拟发动机在整车中的安装使用条件,如水箱、风扇、发动机在机舱中的布置、附件及管路连接等,搭建发动机热管理系统试验台架。根据热管理仿真分析软件KULI建模的参数输入要求,设计台架试验工况。通过仿真和试验的数据对比验证了模型的准确性,并利用NEDC驾驶循环模拟整车冷却系统性能以指导热管理系统零部件的选型与匹配。  相似文献   

8.
插电式串联混合动力轿车的选型匹配与仿真   总被引:3,自引:0,他引:3  
以某插电式串联混合动力轿车为例,在整车性能指标和系统结构确定的基础上,对电驱动系统、储能系统和辅助动力单元进行选型和优化匹配,确定了发动机的最优工作点.对所建的整车仿真模型,分别采用国家标准规定的UDC和NEDC循环工况、轻型车循环工况和等速行驶工况,进行整车动力性、经济性的仿真验证.结果表明,在3种工况下,所确定的动力系统方案都能很好地满足整车动力性和经济性的要求.  相似文献   

9.
建立了混合动力轻型客车样车的动力系统数学模型,基于这些数学模型及整车模糊逻辑能量管理控制策略,在MATLAB软件环境中建立了混合动力样车的整车仿真模型,仿真计算了样车在NEDC循环行驶工况下的燃油经济性,并利用MATLAB软件编程计算了其动力性.研究结果表明,该混合动力轻型客车的整车动力性符合初始设计目标,燃油经济性较...  相似文献   

10.
针对一款已知基本参数的纯电动城市物流车,根据整车性能目标参数,对动力系统主要部件进行参数设计和选型。之后基于Cruise仿真软件搭建整车模型,并从动力性和经济性两方面分析整车性能,验证匹配设计的合理性。  相似文献   

11.
In this paper a package for designing, modelling and simulation of three hybrid powertrains are presented. These powertrains are Electric hybrid, Hydraulic hybrid and Flywheel hybrid. The differences among the proposed hybrid powertrains include the energy storage system components, the secondary power converter and also the powertrain configuration. The O457 city bus is considered as the benchmark vehicle. At first, the design process for each hybrid powertrain which is based on the power requirements of the bus in any driving condition is presented. Then, the powertrains modelling using MATLAB/Simulink as a powerful simulating tool is presented. The models are feed-forward and resemble the real world driving conditions. Each model has the blocks for the main components of the corresponding propulsion system. The most important stage in the modeling process is implementing of the components efficiency in each powertrain. Moreover, there is a block in each hybrid powertrain model for the energy management. Finally, the simulation results for comparing the usefulness of the hybrid powertrains are presented. The results indicate that the electric hybrid powertrain has the most effect on reducing the bus fuel consumption. But regarding the fabrication expenses and manufacturing complexity, the hydraulic hybrid powertrain is recommended.  相似文献   

12.
将EQ6110公交车改造为并联式液压混合动力公交车,基础车的动力系统不作改变,建立了液压混合动力公交车模型,对液压系统独立工作时的驱动和制动性能进行了仿真及实车试验,为系统的参数匹配提供依据.采用简化公交循环工况的实车试验表明,动力性能满足起步和制动要求,燃油经济性改善达25%以上;另外,仿真结果也表明,动力性能可以满足国家典型公交行驶循环下的起步和制动性要求,制动再生效率达70%,燃油经济性改善达30%.  相似文献   

13.
首先分析燃料电池的特性得出了动力总成结构配置的优化解决方案,并且根据设计性能要求进行动力总成主要部件基本参数设计;最后基于典型的客车循环工况,建立燃料电池混合动力系统的优化模型,采用序列二次规划算法对混合动力系统的两种能量管理策略进行优化仿真,其结果符合设计要求。  相似文献   

14.
This research concerns the design of a powertrain system for a plug-in parallel diesel hybrid electric bus equipped with a continuously variable transmission (CVT) and presents a new design paradigm for the plug-in hybrid electric bus (HEB). The criteria and method for selecting and sizing powertrain components equipped in the plug-in HEB are presented. The plug-in HEB is designed to overcome the vulnerable limitations of driving range and performance of a purely electric vehicle (EV), and it is also designed to improve the fuel economy and exhaust emissions of conventional buses and conventional HEBs. Optimization of the control strategy for the complicated and interconnected propulsion system in the plug-in parallel HEB is one of the most significant factors for achieving higher fuel economy and lower exhaust emissions in the hybrid electric vehicle (HEV). In this research, the proposed control strategy was simulated to prove its validity using the ADVISOR (advanced vehicle simulator) analysis simulation tool.  相似文献   

15.
The plug-in hybrid electric bus (HEB) is designed to overcome the vulnerable driving range and performance limitations of a purely electric vehicle (EV) and have an improved fuel economy and lower exhaust emissions than those of a conventional bus and convention HEBs. The control strategy of the plug-in parallel HEB??s complicated connected propulsion system is one of the most significant factors for achieving a higher fuel economy and lower exhaust emissions than those of the HEV. The proposed powertrain control strategy has flexibility in adapting to the battery??s state of charge (SOC), exhaust emissions, classified driving patterns, driving conditions, and engine temperature. Simulation is required to model hybrid powertrain systems and test and develop powertrain control strategies for the plug-in parallel HEB. This paper describes the simulation analysis tools, powertrain components?? models and modifications, simulation procedure, and simulation results.  相似文献   

16.
This research is the first to develop a design for a powertain system of a plug-in parallel diesel hybrid electric bus equipped with a continuously variable transmission (CVT) and presents a new design paradigm of the plug-in hybrid electric bus (HEB). The criteria and method for selecting and sizing powertrain components equipped in the plug-in HEB are presented. The plug-in HEB is designed to overcome the vulnerable limitations of driving range and performance of a purely electric vehicle (EV) and to improve fuel economy and exhaust emissions of conventional bus and conventional HEBs. The control strategy of the complicated connected propulsion system in the plug-in parallel HEB is one of the most significant factors in achieving higher fuel economy and lower exhaust emissions of the HEV. In this research, a new optimal control strategy concept is proposed against existing rule-based control strategies. The optimal powertrain control strategy is obtained through two steps of optimizations: tradeoff optimization for emission control and energy flow optimization based on the instantaneous optimization technique. The proposed powertrain control strategy has the flexibility to adapt to battery SOC, exhaust emission amount, classified driving pattern, driving condition, and engine temperature. The objective of the optimal control strategy is to optimize the fuel consumption, electricity use, and exhaust emissions proper to the performance targets. The proposed control strategy was simulated to prove its validity by using analysis simulation tool ADVISOR (advanced vehicle simulator).  相似文献   

17.
分析一种单轴并联式混合动力系统的工作原理,对动力总成关键部件进行匹配计算。在Matlab/Simulink环境下,对电动汽车仿真软件ADVISOR进行二次开发,嵌入动力系统的控制策略,对整车进行动力性和经济性仿真分析,为混合动力客车动力系统的匹配设计提供参考。  相似文献   

18.
燃料电池混合动力汽车动力系统匹配与优化研究   总被引:2,自引:0,他引:2  
首先,基于中国客车典型循环工况对燃料电池混合动力系统进行匹配计算,确定了电动机、燃料电池发动机和蓄电池的基本参数;然后基于中国客车典型循环工况,建立燃料电池混合动力系统的优化模型,采用序列二次规划算法进行优化,分析了各种参数对整车燃料经济性的影响,包括燃料电池发动机与动力蓄电池之间的功率分配比、SOC的初始值与目标值、变速器传动比及传动比间隔以及主减速比等,为燃料电池混合动力汽车的构型提供指导。  相似文献   

19.
罗玉涛  赵克刚 《汽车工程》2007,29(6):497-501
以某混合动力电动大客车应用为例,设计开发了基于CAN总线的AMT控制系统。开发了基于H桥电路执行机构的电动机驱动电路和基于PID的控制程序。仿真及试验表明,该控制系统具有良好的稳定性和实用性,为混合动力电动汽车的多能源动力总成实现自动能量分配提供了可能。  相似文献   

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