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Hierarchical Hybrid Architecture for Volt/Var Control of Power Distribution Grids

机译:配电网电压/电压控制的分层混合体系结构

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This paper presents a hierarchical-hybrid architecture for Volt/Var control of distribution grids in the presence of high penetration of distributed generators (DGs). The architecture includes three layers with specific operational goals associated with each layer based on data resolution, communication network, and control device response time. The top layer carries out central optimization and seeks to minimize power losses via optimal 15-minute scheduling of load tap changers (LTCs), voltage regulators (VRs), and capacitor banks (CBs), and DGs. The middle layer ensures voltage regulation using a distributed approach for reactive power provisioning by fast response DGs. The bottom layer carries out local decision making that enlists edge intelligence to operate LTCs, VRs and CBs to cope with fast and real-time changes in DGs and loads. The top layer generates overall references for the lower layers optimized over a 24-hour horizon, updated at 15-minute intervals, which are then suitably corrected at faster time-scales of seconds in the middle and bottom layers. Appropriate coordination is introduced between each layer so as to meet combined goals of optimization and accommodation of load and generation uncertainties in near real-time. The proposed method is validated using a modified IEEE 34 bus test feeder and at 80% penetration of DGs.
机译:本文提出了一种在分布式发电机(DGs)渗透率很高的情况下用于配电网电压/电压控制的分层混合架构。该体系结构包括三层,基于数据分辨率,通信网络和控制设备响应时间,每层都有特定的操作目标。顶层执行集中优化,并通过对负载分接开关(LTC),电压调节器(VR),电容器组(CB)和DG进行15分钟的最佳调度来使功率损耗最小化。中间层使用分布式方法通过快速响应DG确保无功功率供应的电压调节。底层执行本地决策,该决策利用边缘智能来操作LTC,VR和CB,以应对DG和负载的快速实时变化。顶层为在24小时范围内优化的较低层生成总体参考,以15分钟为间隔进行更新,然后在中间层和底层以更快的秒数进行适当的校正。在每一层之间引入适当的协调,以达到优化和适应负荷以及发电不确定性的组合目标。使用改进的IEEE 34总线测试馈线并以DG的80%渗透率对所提出的方法进行了验证。

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