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Experimentation with a ZEBRA plus EDLC based hybrid storage system for urban means of transport

机译:基于ZEBRA和EDLC的混合存储系统用于城市交通工具的实验

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This paper presents an experimental evaluation phase carried out on ZEBRA batteries and Electrical Double Layer Capacitors (EDLCs) based storage system, which is able to power electric urban mini-busses. The particular analyzed case study is focused on a power train, specifically designed for electric urban road applications, composed by a fixed ratio gear box connected to an asynchronous 70 kW electric drive, which is supplied by the electric parallel of two 20 kWh Zebra batteries and a 63 F super-capacitors bank. The power train is studied by means of a laboratory 100 kW regenerative electric brake, provided with speed and torque controls, in order to experimentally measure the performance of the vehicle under study, on both steady state and dynamic operative conditions. The energy flux management of the hybrid storage system is preliminarily evaluated and tested in a simulation environment and then directly embedded in the power converters, interposed between storage systems and traction electric motor, to run experiments on the whole vehicle power train. In this way the combination of the two technologies of storage systems are tested in laboratory under various working conditions and with a different contribution of each storage device, in terms of electric energy and power. The obtained experimental results shows, on one side the effectiveness of the control strategies, evaluated to balance energy and power coming from the storage system to supply the traction electric drive, and on the other side the identification of a methodology to evaluate the performance of innovative hybrid storage systems, when powering road urban transportation vehicles.
机译:本文介绍了在ZEBRA电池和基于双层电容量(EDLC)的存储系统上进行的实验评估阶段,该存储系统能够为城市小型公共汽车供电。分析的特定案例研究集中于专门为城市电动道路应用设计的动力总成,该动力总成由固定比率的变速箱连接到异步70 kW电力驱动器组成,该电力驱动器由两个20 kWh斑马电池的电并联提供,一个63 F的超级电容器银行。动力传动系通过配备有速度和扭矩控制装置的实验室100 kW再生电制动器进行研究,以便在稳态和动态操作条件下通过实验测量所研究车辆的性能。混合存储系统的能量通量管理在模拟环境中进行了初步评估和测试,然后直接嵌入到介于存储系统和牵引电动机之间的功率转换器中,以对整个车辆动力总成进行实验。通过这种方式,在实验室中的各种工作条件下测试了两种存储系统技术的组合,并且每种存储设备在电能和功率方面的贡献都不同。获得的实验结果表明,一方面,控制策略的有效性得到了评估,以平衡来自存储系统的能量和功率以提供牵引电力驱动;另一方面,确定了一种评估创新性能的方法。混合动力存储系统,为道路城市运输车辆提供动力时。

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