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Design and Implementation of a Two-Stage Grid-Connected High Efficiency Power Load Emulator

机译:两阶段并网高效电力负荷仿真器的设计与实现

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摘要

The need to reduce the time consumption in developing and implementing power converters, and to improve the effectiveness of the test equipment, continues to grow. This trend is further accelerated through the development of electricity-based technology, such as the electric or hybrid vehicle. As the price of energy continues to increase, regenerative test equipment used for validating power converters are gaining importance and attention. This paper focuses on the development of a two-stage regenerative power load emulator. This type of intelligent load requires a connection to the network interface, which, for some applications, should be bidirectional and must possess a galvanic isolation. The development of such grid-connected unit that processes ac–dc conversion is treated in this paper. A 5 kW prototype is used as a base to model, simulate, design, implement, and test such a system. The stability of the interconnection between the two conversion stages is established and tested in real-time applications. The prototype was tested at 180, 220, and 260 V RMS. The measured efficiency is higher than 90%, and the power factor is 0.99 over a wide range of operation.
机译:减少开发和实施功率转换器的时间消耗以及提高测试设备的效率的需求在不断增长。随着基于电动技术的发展,例如电动或混合动力汽车,这一趋势进一步加速。随着能源价格的不断上涨,用于验证功率转换器的可再生测试设备正变得越来越重要和受到关注。本文着重于两阶段可再生功率负载仿真器的开发。这种类型的智能负载需要连接到网络接口,对于某些应用程序,该接口应该是双向的,并且必须具有电流隔离。本文讨论了这种处理交流到直流转换的并网设备的开发。一个5 kW的原型被用作对此类系统进行建模,仿真,设计,实施和测试的基础。在实时应用中建立并测试了两个转换阶段之间互连的稳定性。该原型在180、220和260 V RMS下进行了测试。测得的效率高于90%,并且在广泛的工作范围内,功率因数均为0.99。

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