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Electrical component model for a nickel-cadmium electric vehicle traction battery

机译:镍镉电动车牵引电池的电气元件模型

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Saft STM 5.140 nickel cadmium batteries were evaluated at the UMASS Lowell Battery Evaluation Laboratory. An electrical component model was developed based on the test data. Step responses of the battery from seconds to days were considered. Faster time constants than this were not considered because they are presumed to be attenuated within the input filter of the traction motor drive controller. An impedance element model was developed with components associated with the current collection grid, the active plate materials, the electrolyte, and the self discharge. Model elements may be approximated as resistors and capacitors, however some of the values of capacitor and resistor elements vary as a function of load current or state of charge. Constant current charge and discharge tests provided baseline characteristics. Element values were determined using data from self discharge and pulse test cycles. The model was validated using a realistic electric vehicle test in which the response of the battery model to an actual electric vehicle load profile was compared to that of the actual battery.
机译:SAFT STM 5.140在Umass Lowell电池评估实验室评估了SAFT STM 5.140镍镉电池。基于测试数据开发了一种电气元件模型。考虑了电池的步骤响应。不考虑比这更快的时间常数,因为它们被假定在牵引电动机驱动控制器的输入滤波器内衰减。利用与集合网格,有源板材,电解质和自放电相关联的部件开发阻抗元件模型。模型元件可以近似为电阻器和电容器,但是电容器和电阻元件的一些值作为负载电流或充电状态的函数而变化。恒流充电和放电测试提供了基线特性。使用来自自放电和脉冲测试周期的数据确定元素值。使用现实电动车辆测试验证了模型,其中电池模型与实际电动车载曲线的响应与实际电池的响应进行了比较。

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