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Optimal Multi-Period Dispatch of Distributed Energy Resources in Unbalanced Distribution Feeders

机译:不平衡配送馈线中分布式能源的最佳多周期调度

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摘要

This paper presents an efficient algorithm for the multi-period optimal dispatch of deterministic inverter-interfaced energy storage in an unbalanced distribution feeder with significant solar PV penetration. The three-phase, non-convex loss-minimization problem is formulated as a convex second-order cone program (SOCP) for the dispatch of batteries in a receding-horizon fashion in order to counter against the variable, renewable generation. The solution of the SOCP is used to initialize a nonlinear program (NLP) in order to ensure a physically realizable solution. The phenomenon of simultaneous charging and discharging of batteries is rigorously analyzed and conditions are derived that guarantee it is avoided. Simulation scenarios are implemented with GridLab-D for the IEEE-13 and IEEE-123 node test feeders and illustrate not only AC feasibility of the solution, but also near-optimal performance and solve-times within a minute.
机译:本文提出了一种高效的算法,用于多周期最佳调度,在具有显着的太阳能光伏渗透的不平衡分布馈线中的确定性逆变器接口储能。三相,非凸损最小化问题被制定为凸二阶锥形程序(SOCP),用于调度倒退的地平时的电池,以便对抗变量,可再生的一代。 SOCP的解决方案用于初始化非线性程序(NLP),以确保物理可实现的解决方案。分析了电池的同时充电和放电现象,并且导出了条件的保证避免。模拟方案是用IEEE-13和IEEE-123节点测试馈线的Gridlab-D实现,并且不仅说明了解决方案的交流可行性,还可以在一分钟内实现近最佳性能和解决时间。

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