低压直流电网稳定性评估中电力电子变换器复杂阻抗的建模与测量

L. Ott, Yunchao Han, Oliver Stephani, Julian Kaiser, Bernd Wunder, M. Mârz, K. Rykov
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引用次数: 9

摘要

在低压直流电网中互连电源转换器可能是一项具有挑战性的任务,因为这些设备在其开发过程中很少在最终运行条件下与来自不同制造商,不同类型负载和适当电网阻抗的转换器一起进行测试。在最坏的情况下,固定振荡可能发生在电网设置中,其实际原因很难确定,解决问题将需要耗时的试验和错误方法。因此,关于电源变换器如何对电网侧干扰作出反应的理论知识对于在将设备连接在一起之前对低压直流电网的静态和动态性能进行初步分析至关重要。基于这些考虑,可以推导出电源变流器控制回路和电网侧电容器尺寸的一般准则。下面的概述描述了当输出电流受到干扰时,功率转换器行为的基本原理,例如来自负载阶跃的干扰。另一个重点在于塑造变流器的电网侧阻抗,以避免稳定性问题。此外,还详细介绍了一种测量感兴趣阻抗的方法。所有得到的结果都在一个简短的案例研究中得到了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and measuring complex impedances of power electronic converters for stability assessment of low-voltage DC-grids
Interconnecting power converters within a low voltage DC grid can be a challenging task since these devices are rarely tested under final operating conditions during their development process in conjunction with converters from different manufacturers, different kinds of loads and appropriate grid impedances. In the worst case, stationary oscillations might occur in the grid setup for which the actual reason is hard to determine and solving the problem will require time-consuming trial and error means. Therefore, theoretical knowledge about how power converters react on grid-side disturbances is crucial for a preliminary analysis of the static and dynamic performance of low-voltage DC grids before plugging the devices together. Based on these considerations general guidelines for the dimensioning of control loops and grid-side capacitors of power converters can be derived. The following outlines describe the fundamentals of power converter behavior when exposed to disturbances occurring on the output current, e. g. from load steps. Another focus lies on shaping grid-side impedances of converters to avoid stability issues. Furthermore, a method to measure the impedances of interest is thoroughly described. All obtained results are verified in a brief case study.
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