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Power system stability analysis under increasing penetration of photovoltaic power plants with synchronous power controllers

机译:具有同步功率控制器的光伏电站日益普及的电力系统稳定性分析

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摘要

The utilisation of renewable sources brings many benefits to electric power systems, but also some challenges such as the impact that renewable power plants employing power electronics have on the grid, which is gaining importance as the penetration of this type of generating stations increases, driven by the construction of large wind or solar photovoltaic (PV) power plants. This study analyses the impact of large-scale PV power plants on a transmission grid for different penetration levels. The analysis considers power plants formed by a number of power converters employing synchronous power controllers (SPCs), that allow them to have a harmonious interaction with the grid, and compares their performance with that of conventional power converter controllers, assuming in both cases that the power plants participate in frequency and voltage regulation. The study addresses both the small-signal stability of the system and its response to large disturbances that alter the active power balance and frequency stability. The results of the analysis show that PV power plants using SPCs are able to limit frequency deviations, improve the oscillation damping, and reduce the stress of other generating units, thus having a beneficial impact on the power system.
机译:可再生能源的利用给电力系统带来了许多好处,但也带来了一些挑战,例如采用电力电子技术的可再生能源发电厂对电网的影响,随着此类发电站的普及率的提高,这种影响越来越重要。大型风能或太阳能光伏(PV)发电厂的建设。这项研究分析了不同渗透水平下大型光伏电站对输电网的影响。该分析考虑了由许多采用同步功率控制器(SPC)的功率转换器组成的电厂,这些电厂允许它们与电网进行和谐的交互,并在两种情况下均将其性能与常规功率转换器控制器的性能进行了比较。发电厂参与频率和电压调节。这项研究既解决了系统的小信号稳定性问题,又解决了其对改变有功功率平衡和频率稳定性的大干扰的响应。分析结果表明,使用SPC的光伏电站能够限制频率偏差,提高振动阻尼并降低其他发电机组的压力,从而对电力系统产生有益的影响。

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