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A Command Governor Approach for the Voltage Control in Smart Grids with Distributed Generation and Storage Devices

机译:具有分布式生成和存储设备的智能电网电压控制的指令调速方法

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High penetration of Distributed Generation (DG) plants in Medium Voltage (MV)/Load Voltage (LV) power grids may lead to abrupt voltage raises. Typical critical scenarios are represented by either low demand conditions or high power production from renewable sources. Traditional approaches used to face such a situation involve both the disconnection of the distributed generators and the curtailment of the generated power leading to several disadvantages. However, new technologies allow an active orchestration between some controllable devices of the grid, e.g. distributed generators, MV/HV transformers, storage devices in order to maintain relevant system variables within prescribed operative constraints in response to unexpected adverse conditions. This work addresses the online management of distributed generators and storage devices. The approach is based on Command Governor (CG) ideas and is based on the resolution at each time instant of an optimization problem containing explicit constraints related to voltage bounds and operational limits of adopted devices.
机译:中电压(MV)/负载电压(LV)电网中的分布式产生(DG)植物的高渗透可能导致突然电压升高。典型的临界情景由可再生源的低需求条件或高功率生产来表示。用于面对这种情况的传统方法涉及分布式发电机的断开和产生的功率的缩减,导致几个缺点。但是,新技术允许在网格的某些可控设备之间进行积极的编排,例如,分布式发电机,MV / HV变压器,存储设备,以便在规定的操作系统内维持相关的系统变量,以响应意外不利条件。这项工作解决了分布式发电机和存储设备的在线管理。该方法基于命令调速器(CG)思想,并且基于每个时间瞬间的分辨率,其中优化问题包含与所采用设备的电压界限和操作限制相关的显式约束。

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