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Rapid Prototyping Testing Technique for Electric Vehicle Propulsion Systems Utilizing Real-Time Hardware in-the-Loop (HIL) Device

机译:采用实时硬件(HIL)设备的电动汽车推进系统快速原型测试技术

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This paper introduces a powerful rapid prototyping technique using Typhoon hardware in the loop device for electric vehicles EV applications. First, the propulsion system of an electric vehicle in a front-wheel-drive configuration is built and tested in PSIM. Then, an all-wheel-drive configuration is built and tested in PSIM, achieving a new design of the propulsion system. The total drive train for both configurations is built and run using Typhoon's FPGAs which is governed in real time by the control algorithm implemented to the connected DSP board. Thus, both configurations run in real-time in Typhoon HIL without the need of real hardware setup but with utilizing a market available DSP controller. The results obtained from PSIM and Typhoon HIL in front wheel drive and all-wheel drive configurations are very close argument, which illustrate the rapid prototyping capability of Typhoon HIL that save the cost of having a real hardware in the testing period of the research and minimize the time of testing while adding the safety factor to the process.
机译:本文介绍了使用Typhoon硬件在用于电动车辆EV应用的环路设备的强大快速原型制造技术。首先,在前轮驱动配置的电动车辆的推进系统是建立并在PSIM测试。然后,全轮驱动的配置是建立在PSIM测试,实现了推进系统的新设计。对于这两种配置的总传动系是建立和使用在实时通过实现向所连接的DSP板的控制算法控制的台风的FPGA运行。因此,这两种配置,而无需真正的硬件设置的但利用市场上现有的DSP控制器运行在台风HIL实时。在前轮驱动和全轮驱动配置从PSIM和台风HIL所得到的结果非常接近的说法,这说明台风HIL的快速原型制作功能,保存在研究的测试期间具有真正的硬件和最小化的成本同时增加了安全系数的方法测试的时间。

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