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Equivalent Model of Large-Scale Synchronous Photovoltaic Power Plants

机译:大型同步光伏电站的等效模型

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The impact that power plants employing renewable energy sources have on power systems is no longer negligible due to the ever-increasing portion of the power share that these generation systems represent. Therefore, the static and dynamic effects of these power plants on the grid must be analyzed in at least the same degree of detail as conventional generating units. For this purpose, it is necessary to develop models that are accurate and able to capture the dynamics of interest for the analysis, but also taking into account that they should be manageable and have a good computational performance. In the case of power plants based on photovoltaic (PV) or wind energy, formed by many power converters, an equivalent plant model that reduces the number of devices offers a good tradeoff between accuracy and complexity. Motivated by the analysis of an actual 100 MW PV power plant formed by 100 converters, each of them governed by a synchronous power controller, this paper presents a general method to derive a dynamic equivalent model of a group of converters that use this type of controller. The method is applied to this power plant in order to obtain several equivalent models with different degrees of detail that are compared through simulation. The results prove the accuracy of the equivalent aggregated models under different conditions and allow measuring the reduction in computation time that they achieve.
机译:由于这些发电系统所代表的电力份额不断增加,采用可再生能源的发电厂对电力系统的影响不再微不足道。因此,必须至少以与常规发电机相同的详细程度分析这些发电厂对电网的静态和动态影响。为此,有必要开发准确且能够捕获感兴趣的动力学以进行分析的模型,同时还要考虑到模型应易于管理并具有良好的计算性能。对于由许多电源转换器组成的基于光伏(PV)或风能的发电厂,减少设备数量的等效发电厂模型可在精度和复杂性之间取得良好的平衡。通过分析由100个转换器组成的实际100 MW光伏电站的动力,每个转换器都由同步功率控制器控制,本文提出了一种通用方法来推导使用这种类型的控制器的一组转换器的动态等效模型。该方法应用于该发电厂,以便获得具有不同详细程度的多个等效模型,并通过仿真进行比较。结果证明了等效聚集模型在不同条件下的准确性,并可以衡量它们所实现的计算时间的减少。

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