共查询到19条相似文献,搜索用时 965 毫秒
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混合动力电动汽车(Hybrid Electric Vehicles,HEV)一方面融合了传统汽车成熟的技术和现有的工业基础,另一方面融合了电动汽车低排放和低油耗的特点,使其在当前很长一段时间内具有广阔的市场前景。为了达到优化HEV性能的目的,文章以EQ6110混合动力客车为研究对象,在建立的EQ6110HEV性能优化问题求解模型基础上,完成了对EQ6110HEV动力系统部件功率参数和电力辅助控制策略控制参数的优化,并且对优化前后的结果进行了对比分析,结果表明优化后的整车性能有较大改善。 相似文献
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分析了当前混合动力汽车协调控制的关键技术,介绍了串联式混合动力汽车的主要控制理论、整车控制策略研究的重点,并对手动档串联式混合动力汽车(SHEV)控制策略进行研究.此控制策略研究对SHEV的整车控制设计与开发具有指导和借鉴意义. 相似文献
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受到不同动力源响应差异及离合器非连续工作特点的影响,混合动力汽车(Hybrid Electric Vehicle,HEV)在模式切换过程中存在动力传递不连续及整车纵向冲击。针对一种采用新型动力耦合构型的混合动力汽车,研究了车辆由纯电动状态切换至发动机单独驱动的多动力源协调控制策略。此方案将模式切换过程分为5个阶段,确定了不同切换阶段的控制策略,并提出了基于模糊控制的离合器接合策略。仿真结果表明,提出的模式切换协调控制策略使整车冲击度减小了73.5%,提高了HEV模式切换过程的平顺性。 相似文献
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J. Kim N. Kim S. Hwang Y. Hori H. Kim 《International Journal of Automotive Technology》2009,10(6):733-742
A motor control strategy for an input-split hybrid electric vehicle (HEV) is proposed. From a power characteristic analysis,
it is found that the powertrain efficiency decreases for speed ratios at which power circulation occurs. Using dynamic models
of an input-split HEV powertrain, a motor-generator control algorithm for obtaining high system efficiency is designed by
inversion-based control. The performance of the control algorithm is evaluated by the simulator which is developed based on
PSAT, and simulation results are compared with the test results. It is found that, even if the engine thermal efficiency is
sacrificed by moving the engine operation point from the OOL for the control strategy, improved overall powertrain system
efficiency can be achieved by the engine operation that gives a relatively high efficiency from the viewpoint of the overall
powertrain efficiency. The control algorithm developed can be used in design of future electric vehicles. 相似文献
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在镍氢电池生热理论的基础上,根据混合动力汽车试验循环工况获得的充放电电流计算得到电池的生热功率,建立了电池组散热系统的散热模型。应用计算流体力学方法对电池组的温度场进行了数值模拟仿真分析,并进行了混合动力汽车试验循环工况下镍氢电池组的温度场试验。结果表明,模拟值与试验值吻合;电池组具有良好的散热效果,可满足混合动力汽车在生热、散热方面对镍氢电池的使用要求。 相似文献
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混合动力汽车燃油经济性研究 总被引:3,自引:0,他引:3
应用能量分析的方法,以轿车和载货汽车为例,研究了混合动力汽车(HEV)与传统燃油发动机汽车的燃油经济性。发现按原车后备功率最大值时所对应的车速所需的驱动功率作为HEV燃油发动机功率的选择依据,节油效果最显著。当燃油驱动功率和电动驱动功率各占50%左右时,HEV轿车的经济性评价指标为原车的22.8%,HEV货车的经济性评价指标为原车的79.2%,同时又能保证动力性基本不变。结果表明,用混合动力可以有效地降低汽车的100km燃料消耗量,轿车的燃料消耗降低幅度大于货车。 相似文献
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为实现双电机混联构型混合动力车辆(HEV)的串并联切换控制,通过对双电机混联构型进行串并联驱动模式分析,提出一种通过三动力源协调控制的无动力中断切换方法。将串联到并联切换过程分为发动机工作点转移、离合器结合、动力源切换3个阶段,将并联到串联行驶切换过程划分为动力源切换、离合器打开、发动机工作点转移3个阶段,并通过仿真分析和实车测试对控制方法进行了验证。结果表明:在时速80 km/h进行串联到并联切换时,切换过程历时1.76 s,切换冲击度小于10 m/s3,相同时速进行并联到串联切换时,切换过程历时2.57 s,切换冲击度小于5 m/s3,整个切换过程,均没有出现动力中断现象。因此,本控制方法,能够顺利地完成串并联切换控制。 相似文献
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Jongryeol Jeong Namwook Kim Wonsik Lim Yeong-Il Park Suk Won Cha Myeong Eon Jang 《International Journal of Automotive Technology》2017,18(5):891-900
In a hybrid electric vehicle (HEV) system, it is an important issue on how to distribute the output power from multiple power generating components to operate a vehicle more efficiently. Many studies have been conducted on how to manage multiple power sources of a vehicle based on various optimization theories. In this study, an algorithm to calculate the optimization of a series HEV that has three power generating components, engine, battery and ultra-capacitor, is developed based on dynamic programming. Normally dynamic programming is applied to the optimization of power management and components sizing by estimating potential fuel economy for electrified vehicle such as HEV, Plug-in HEV or Fuelcell HEV. In contrast with most objective systems that have only two power generating components, the system in this study has three power sources. Since the system has three power sources, the number of state and control variables of optimization problem increases. Therefore the number of calculations increases unreasonably. To decrease the number and time of calculations, a new electric model that contains the both characteristics of battery and ultra-capacitor is developed with some assumptions. In comparison with the optimization algorithm which follows the theory of DP with no assumptions, the results from the newly developed algorithm has 1.04 % discrepancy in terms of fuel economy, even though the calculation time decreases to 4400 times less. 相似文献