Simplified method for measurement-based black-box harmonic stability assessment of single-phase power electronic devices

E. Kaufhold, Jan Meyer, C. Duque, P. Schegner
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Abstract

The increasing share of power electronic (PE) devices in public energy networks has caused harmonic instabilities. A harmonic instability implies an interaction of the device control with the network impedance that leads to an unwanted shut down of the PE device. To analyze and predict the PE device behavior, different study approaches have been developed. While white-box approaches are not always applicable since the parameters of the devices are not always disclosed, black-box models can be generated based on measurements and used for the stability analysis. However, the measurements require expensive and accurate grid-simulators. The aim of this paper is to provide a measurement-based black-box method to analyze the harmonic stability of single-phase PE devices for low power applications in LV networks without deriving PE device models. Next to air coils as test stand impedances, a simple voltage source that generates a sinusoidal voltage at power frequency is sufficient for the proposed method. The method is demonstrated on a commercially available single-phase photovoltaic inverter and validated by the respective background theory.
基于测量的单相电力电子设备黑盒谐波稳定性评估简化方法
电力电子(PE)设备在公共能源网络中所占的份额越来越大,造成了谐波不稳定。谐波不稳定意味着设备控制与网络阻抗的相互作用,导致PE设备不必要的关闭。为了分析和预测PE设备的行为,已经开发了不同的研究方法。虽然白盒方法并不总是适用,因为设备的参数并不总是公开的,但黑盒模型可以根据测量结果生成并用于稳定性分析。然而,测量需要昂贵而精确的电网模拟器。本文的目的是在不推导PE器件模型的情况下,提供一种基于测量的黑盒方法来分析低压网络中低功率应用的单相PE器件的谐波稳定性。在作为试验台阻抗的空气线圈旁边,一个简单的电压源在工频产生正弦电压就足以满足所提出的方法。该方法在市售的单相光伏逆变器上进行了验证,并通过相应的背景理论进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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