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Impact of Distributed Virtual Inertia from Photovoltaic Sources on Frequency Regulation in Hybrid Power System

机译:光伏电源分布的虚拟惯量对混合动力系统频率调节的影响

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As a consequence of the recent progress in solar photovoltaic technology and advancement in converter technology, solar photovoltaic (PV) sources have emerged as one of the most promising renewable sources for utility-scale power generation. However, the control mechanism of the PV system is completely decoupled from the grid. Hence PVs do not inherently participate in inertial frequency regulation leading to a total reduction in system inertia. Besides this, the irradiance variation and stochastic nature of loads create severe stress on the conventional sources and possibly results in large frequency deviation. To address the issue of reduced inertial responses at higher PV penetration level this paper proposes a concept of emulated inertia from PV generators by the de-loaded operation. This mechanism will allow PV to participate in system frequency regulation and provides better inertial responses compared to the PV system operating in maximum powerpoint. The study also analyses the small-signal stability of the system and its response to irradiance change when multiple PV generators are connected in a hybrid power system. It is found that PV generators in a single area have a large influence on frequency stability. Due to the derived inertial response from PV, the power fluctuations due to irradiance variations are counterbalanced and bring better frequency regulations even at a high level of penetration. The result of the analysis shows that the proposed method improves the frequency regulation and significantly reduces the stress on other conventional sources.
机译:由于太阳能光伏技术的最新进展和转换器技术的发展,太阳能光伏(PV)能源已经成为公用事业规模发电中最有希望的可再生能源之一。但是,光伏系统的控制机制已与电网完全分离。因此,PV不会固有地参与惯性频率调节,从而导致系统惯性的总体降低。除此之外,辐照度的变化和负载的随机性会在常规光源上产生严重的应力,并可能导致较大的频率偏差。为了解决在较高的PV穿透水平下惯性响应降低的问题,本文提出了通过卸载操作模拟PV发电机的惯性的概念。与在最大功率点运行的光伏系统相比,该机制将允许PV参与系统频率调节并提供更好的惯性响应。该研究还分析了混合动力系统中连接多个光伏发电机时系统的小信号稳定性及其对辐照度变化的响应。发现单个区域中的光伏发电机对频率稳定性有很大的影响。由于从PV得出的惯性响应,即使辐照度很高,也可以抵消由于辐照度变化引起的功率波动,并带来更好的频率调节。分析结果表明,所提出的方法改善了频率调节并显着降低了其他常规信号源上的压力。

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