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Reactive Power Management for Voltage Rise Mitigation in Distribution Networks with Distributed Generation: a Command Governor Approach

机译:用于分布式发电配电网电压上升缓解的无功功率管理:一种命令调速器方法

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Abstract: High penetration of Distributed Generation (DG) in Medium Voltage (MV) power grids is usually a reason of abrupt voltage raises. In this respect critical scenarios are represented by both low demand conditions and high power production from renewable sources. In order to cope with the possibly resulting voltage limits violation, a typical adopted approach is the disconnection of the distributed generators or the curtailment of the generated power leading to several disadvantages. To address this issue an online management of the reactive power of distributed generators is presented. The approach is based on Command Governor (CG) ideas and is aimed at solving a constrained voltage regulation problem in both centralized and distributed ways. The approach foresees an active coordination between some controllable devices of the grid, e.g. distributed generators, MV/HV transformers, in order to maintain relevant system variables within prescribed operative constraints in response to unexpected adverse conditions. Simulation results show that the proposed approach is more effective than approaches suggested by the current Italian norms on reactive power compensation.
机译:摘要: 分布式发电(DG)在中压电网中的高渗透率通常是电压突然升高的原因。在这方面,关键情景表现为低需求条件和可再生能源的高发电量。为了应对可能产生的电压限制违规,典型的采用方法是断开分布式发电机或缩减产生的电力,从而导致一些缺点。为了解决这个问题,提出了分布式发电机无功功率的在线管理。该方法基于指令调速器(CG)的思想,旨在以集中式和分布式方式解决受约束的电压调节问题。该方法预见到电网中一些可控设备(例如分布式发电机、中压/高压变压器)之间的主动协调,以便将相关系统变量保持在规定的操作约束范围内,以应对意外的不利条件。仿真结果表明,所提方法比目前意大利无功补偿规范所建议的方法更有效。

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