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Assessing Cloud Transient Impacts of Solar and Battery Energy Systems on Grid Inertial Responses

机译:评估太阳能和电池能源系统对电网惯性响应的云瞬态影响

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摘要

To assess the dynamic impact of intermittency of rapidly increasing solar photovoltaic generation on the grid, this article presents the modeling and integration of the components that need to be considered, including the solar photovoltaic plant, battery energy storage system, grid-tied interface, and associated control systems. The complexity and accuracy of these models are suitable for evaluating the transient impact on bulk power systems. Of particular interest is the grid inertial response in such situations as different penetration levels of solar generation and fast cloud transient induced solar generation decrease coupled with outages that recurrently occur in the grid, e.g., a generator trip. The impact of such events on the grid frequency responses is investigated using a simplified simulation approach to account for the locational or spatial irradiance variation patterns and cloud movements. Responsive battery energy storage systems are recognized as an effective means to improve the inertial response.
机译:为了评估快速增长的太阳能光伏发电间歇性对电网的动态影响,本文介绍了需要考虑的组件的建模和集成,包括太阳能光伏电站,电池储能系统,并网接口以及相关的控制系统。这些模型的复杂性和准确性适用于评估对大功率电源系统的瞬态影响。特别令人感兴趣的是在以下情况下的电网惯性响应:不同的太阳能发电渗透水平和快速的云瞬变感应的太阳能发电减少,再加上电网中经常发生的停电事故,例如发电机跳闸。使用简化的模拟方法来研究此类事件对电网频率响应的影响,以说明位置或空间辐照度变化模式和云运动。响应式电池储能系统被认为是改善惯性响应的有效手段。

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