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A Novel Model Based Development of a Motor Emulator for Rapid Testing of Electric Drives

机译:一种基于模型的新型模型,用于电动驱动器的快速测试

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There has been a growing penetration of Variable Speed Drives (VSD) for motor applications in all areas. However, the development of more advanced testing infrastructure has been slow to come and many complex applications of VSDs are difficult to test in the laboratories. Conventional test methods such as dynamometers are expensive, time consuming to build, and offer limited operational profile/dynamic capabilities that do not always represent the true application. This paper is concerned with the development of a solid-state Power Hardware-in-the-Loop (PHIL) based motor load emulation platform that fully replaces electromechanical test systems. The PHIL system is designed using a back-to-back converter that is interfaced with the Device Under Test (DUT) through a link impedance. A novel development process is proposed based on the V-cycle method for firmware development. This helps achieve a tight integration of algorithm verification along with the development process. Real-time simulation of a 22 kW interior permanent magnet motor emulator has been provided to verify the effectiveness of the proposed system.
机译:变速驱动器(VSD)在所有领域的电机应用中的渗透率都在不断提高。但是,更高级的测试基础架构的开发进展缓慢,而且VSD的许多复杂应用程序都很难在实验室中进行测试。诸如测力计之类的常规测试方法昂贵,制造耗时并且提供有限的操作特性/动态功能,这些功能并不总是代表真正的应用。本文关注基于固态功率硬件在环(PHIL)的电动机负载仿真平台的开发,该平台完全替代了机电测试系统。 PHIL系统使用背对背转换器设计,该转换器通过链路阻抗与被测设备(DUT)连接。提出了一种基于V-cycle方法的固件开发新方法。这有助于实现算法验证与开发过程的紧密集成。提供了22 kW内部永磁电动机仿真器的实时仿真,以验证所提出系统的有效性。

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