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A Case Study on Self Healing of Smart Grid With Islanding and Inverter Volt–VAR Function

机译:孤立与逆变伏瓦函数智能电网自愈的案例研究

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Increased variability, and uncertainty getting induced in the power system with the growing penetration of renewable resources necessitates the need for power flow stability studies, analysis, and contingency responses to address various operational concerns. Utilization of Volt-VAR (VV) functions of inverters to mitigate voltage violations have been introduced in recent grid integration standards. All the new grid connected nonsynchronous generators are expected to provide a composite power delivery at continuous rated output power as well as they should participate in dynamic reactive power injection while maintaining the power factor within an acceptable range. The present case study is based on a voltage instability incident which led to partial blackout in state grid, which is also identified as one of the root causes of power system blackouts worldwide. The state power grid case study has been simulated using real-time power grid data collected from PMUs/SCADA system for all 400 and 220 kV nodes. The location for integrating solar PV renewable energy in state grid is identified using an analytical methodology, by deriving an evaluation index represented as improved power stability index. An approach for employing VV functionality of inverter based grid connected solar photovoltaic system, as a solution to address the voltage instability issue that occurred in the conventional grid, is elaborated. The article also illustrates islanding using generator coherency identification.
机译:随着可再生资源的不断增长的渗透率,在电力系统中诱导的可变异性增加,需要需要电力流动稳定性研究,分析和应急响应来解决各种操作问题。在最近的电网集成标准中引入了逆变器伏 - 瓦(VV)函数来减轻电压违规的功能。所有新的网格连接的非同步发电机都预计将在连续额定输出功率下提供复合电源输送,以及它们应参与动态无功功率注入,同时将功率因数保持在可接受的范围内。本案例研究基于电压不稳定事件,该事件导致状态网格中的部分遮光,这也被识别为全球电力系统停电的根本原因之一。已经使用从所有400和220 kV节点的PMU / SCADA系统收集的实时电网数据进行模拟状态电网案例研究。通过导出表示为改善功率稳定性指标的评估指标,使用分析方法识别用于集成Solar PV可再生能量的位置。采用基于逆变器的电网连接太阳能光伏系统的VV功能的方法,作为解决传统网格中发生的电压不稳定性问题的解决方案。本文还示出了使用发电机一致性识别的孤岛。

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