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Coordinated Optimal Network Reconfiguration and Voltage Regulator/DER Control for Unbalanced Distribution Systems

机译:协调最佳网络重新配置和电压调节器/ DER控制对不平衡分配系统

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Network reconfiguration has long been used by distribution system operators to achieve certain operation objectives such as reducing system losses or regulating bus voltages. In emerging distribution systems with a proliferation of distributed energy resources (DERs), co-optimizing network topology and DERs' dispatches could further enhance such operational benefits. This paper focuses on the optimal network reconfiguration problem of distribution systems via an unbalanced ac optimal power flow framework, which rigorously addresses operation characters of unbalanced network, DERs, and voltage regulators (VRs). Two VR models with continuous and discrete tap ratios are studied and compared. The proposed co-optimization problem is formulated as a mixed-integer chordal relaxation-based semidefinite programming model with binary variables indicating line-switching statuses and tap positions. Several acceleration strategies by studying the structure of distribution networks are explored for reducing the number of binary variables and enhancing the computational performance. Case studies on modified IEEE 34-bus and 392-bus systems illustrate the effectiveness of the proposed approach.
机译:网络重新配置已长期被分发系统运营商使用,以实现某些操作目标,例如减少系统损耗或调节总线电压。在具有分布式能源(DERS)增殖的新兴分配系统中,共同优化网络拓扑和DERS的调度可以进一步提高这种运营益处。本文侧重于经由不平衡交流最优功率流量框架的分配系统的最佳网络重新配置问题,该框架严格地解决了不平衡网络,DER和电压调节器(VRS)的操作特征。研究并比较了具有连续和离散抽头比的两种VR模型。所提出的共同优化问题被配制为基于混合整数令人宽松的Semidefinite编程模型,其二进制变量指示线切换状态和敲击位置。通过研究分销网络结构的几种加速策略,用于减少二进制变量的数量并提高计算性能。修改IEEE 34-BUS和392总线系统的案例研究说明了所提出的方法的有效性。

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