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Power Test System Development and Dynamic Performance State Estimation Based on Hub Motor Vehicle

机译:基于轮毂机动车的动力测试系统开发与动态性能状态估计

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Background: The power performance of an electric vehicle is the basic parameter. Traditionaltest equipment, such as the expensive chassis dynamometer, not only increases the cost of testingbut also makes it impossible to measure all the performance parameters of an electric vehicle.Objective: A set of convenient, efficient and sensitive power measurement system for electric vehiclesis developed to obtain the real-time power changes of hub-motor vehicles under various operating conditions,and the dynamic performance parameters of hub-motor vehicles are obtained through the system.Methods: Firstly, a set of on-board power test system is developed by using virtual instrument (Lab-VIEW). This test system can obtain the power changes of hub-motor vehicles under various operatingconditions in real-time and save data in real-time. Then, the driving resistance of hub-motor vehicles isanalyzed, and the power performance of hub-motor vehicles is studied in depth. The power testing systemis proposed to test the input power of both ends of the driving motor, and the chassis dynamometeris combined to test so that the output efficiency of the driving motor can be easily obtained withoutdisassembly. Finally, this method is used to carry out the road test and obtain the vehicle dynamic performanceparameters.Results: The real-time current, voltage and power, maximum power, acceleration time and maximumspeed of the vehicle can be obtained accurately by using the power test system in the real road experiment.Conclusion: The maximum power required by the two motors reaches about 9KW, and it takesabout 20 seconds to reach the maximum speed. The total power required to maintain the maximumspeed is about 7.8kw, and the maximum speed is 62km/h. In this article, various patents have been discussed.
机译:背景:电动汽车的动力性能是基本参数。传统的测试设备,如昂贵的底盘测功机,不仅增加了测试成本,而且无法测量电动汽车的所有性能参数。目的:研制一套便捷、高效、灵敏的电动汽车功率测量系统,获取轮毂电机车辆在各种工况下的实时功率变化,并通过该系统获取轮毂电机车辆的动态性能参数。方法:首先,利用虚拟仪器(Lab-VIEW)开发一套车载功率测试系统;该测试系统可以实时获取轮毂电机车辆在各种工况下的功率变化,并实时保存数据。然后,分析了轮毂电机车辆的驱动阻力,深入研究了轮毂电机车辆的动力性能。提出功率测试系统对驱动电机两端的输入功率进行测试,并结合底盘测功机进行测试,使驱动电机的输出效率无需拆卸即可轻松获得。最后,利用该方法进行道路试验,得到车辆动态性能参数。结果:在实际道路实验中,利用功率测试系统可以准确获得车辆的实时电流、电压和功率、最大功率、加速时间和最大速度。结论:两台电机所需的最大功率达到9KW左右,达到最高转速大约需要20秒。保持最高速度所需的总功率约为7.8kw,最高速度为62km/h。在本文中,讨论了各种专利。

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