智能电阻:具有高带宽功率变换器和储能的直流微电网中恒功率负载的动态稳定

K. Potty, Eric Bauer, He Li, Boxue Hu, Jin Wang
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引用次数: 11

摘要

电力电子转换器和电动机驱动器在汽车,船舶和微电网中的应用越来越多。这些设备在驱动负载时以调节的方式作为恒定功率负载(cpl)。cpl可以作为电源转换器,每个调节输入电流以保持恒定的输出功率。这些变流器由于其非线性特性会对电网造成不稳定影响。本文研究了cpl对直流微电网的影响,并对其稳定性进行了分析。它还演示了一种通过使用高带宽功率转换器和储能单元将这些负载转换成智能电阻来动态稳定这些负载的方法。该电路提供的带宽使直流微电网能够局部控制电网上的任何不稳定因素。该方法分散了控制工作,使微电网更加智能可靠。使用仿真工具验证分析,并使用硬件测试设置验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart resistor: Dynamic stabilization of constant power loads in DC microgrids with high bandwidth power converters and energy storage
Power Electronic converters and electric motor drives have found increased application in automobiles, ships and microgrids. These devices when driving loads in a regulated fashion act as Constant Power Loads (CPLs). CPLs can be power converters, each regulating input current to maintain a constant output power. These converters can cause destabilizing effects on the grid due to their nonlinear behavior. This paper studies the effect of CPLs on DC Microgrids and analyzes their stability. It also demonstrates a method to dynamically stabilize these loads locally by converting them into a smart resistor using high bandwidth power converters and energy storage units. The bandwidth offered by this circuit enables the DC Microgrid to locally control any instabilities on the grid. The proposed method decentralizes the control effort making the microgrid more intelligent and reliable. Analysis is verified using simulation tools and validated using a hardware test setup.
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