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Optimal Restoration of Active Distribution Systems With Voltage Control and Closed-Loop Operation

机译:电压控制和闭环操作的主动分配系统的最佳恢复

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This article presents a new mixed-integer second-order cone programming model for solving the restoration problem in active distribution systems considering the optimal control of distributed generators (DGs), voltage regulators (VRs), on-load tap changers (OLTCs), and capacitor banks (CBs). In contrast to most of the works found in the literature, temporary loops may be formed in the network during the restorative operation state. This operating condition allows restoring the service to more loads. In this way, the objective function of the problem minimizes (i) the total load not supplied, (ii) the number of switching operations, (iii) the changes in the statuses of the voltage control devices and in the dispatch of the DGs, and (iv) the number of basic loops formed in the system. Several tests are carried out using a 53-node system for single-fault and multiple-fault scenarios. The results obtained with the proposed approach outperform the solutions achieved when only radial configurations are allowed in the problem. Moreover, it is also verified that the voltage control allows for more efficient restoration schemes.
机译:本文介绍了一种新的混合整数二阶锥形编程模型,用于解决主动分配系统中的恢复问题,考虑分布式发电机(DGS),电压调节器(VRS),负载振振器(OLTC)和电容器组(CBS)。与文献中的大多数作品相反,在恢复操作状态期间可以在网络中形成临时环路。此操作条件允许将服务恢复到更多负载。以这种方式,问题的目标函数最小化(i)未提供的总负载,(ii)交换操作的数量,(iii)电压控制设备状态和调度DG的变化, (iv)系统中形成的基本环数。使用53节点系统进行几种测试,用于单故障和多故障方案。通过所提出的方法获得的结果优于允许在问题中仅允许径向配置时实现的解决方案。此外,还验证了电压控制允许更有效的恢复方案。

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