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Command Governor Strategies for the Online Management of Reactive Power in Smart Grids With Distributed Generation

机译:分布式发电智能电网无功在线管理的指挥调度策略

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High penetration of distributed generation (DG) in medium voltage (MV) power grids may easily lead to abrupt voltage raises in the presence of either low demand conditions or high power production from renewable sources. In order to cope with the possibly occurring voltage limit violation, the active power injected by the distributed generators is typically curtailed, being, however, such an approach suboptimal from an economical point of view and presenting several other disadvantages. To address this issue, the online management and coordination of the reactive power injected/absorbed by the distributed generators acting on the grid are proposed here. The approach is based on command governor ideas that are used here to optimally solve constrained voltage control problems in both centralized and distributed ways. The approach foresees an active coordination between some controllable devices of the grid, e.g., distributed generators and MV/high voltage 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 DGs connection.
机译:分布式发电(DG)在中压(MV)电网中的高渗透率很容易导致在需求量低或可再生能源产生高功率的情况下突然引起电压升高。为了应对可能发生的电压极限违规,通常减少了由分布式发电机注入的有功功率,但是,从经济的角度来看,这种方法是次优的,并且存在其他一些缺点。为了解决这个问题,这里提出了在线管理和协调由分布在电网上的分布式发电机吸收/吸收的无功功率的方法。该方法基于命令调速器思想,在此将其用于以集中式和分布式方式最佳地解决约束电压控制问题。该方法预见了电网的一些可控设备(例如,分布式发电机和中压/高压变压器)之间的主动协调,以便响应意外的不利条件而将相关的系统变量保持在规定的操作约束之内。仿真结果表明,该方法比意大利现行的DGs连接规范所建议的方法更为有效。

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