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A Novel Sectionalizing Method for Power System Parallel Restoration Based on Minimum Spanning Tree

机译:基于最小生成树的电力系统并行恢复分段算法

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Parallel restoration is a way to accelerate the black-start procedure of power systems following a blackout. An efficient sectionalizing scheme can reduce the restoration time of a system, taking into account the black-start ability, generation-load balance of subsystems, restoration time of branches, start-up time of generating units, and effects of dispatchable loads and faulted devices. Solving the sectionalizing problem is challenging since it needs to handle a large number of Boolean variables corresponding to the branches and nonlinear constraints associated with system topology. This paper investigates power system sectionalizing problem for parallel restoration to minimize the system restoration time (SRT). A novel sectionalizing method considering the restoration of generating units and network branches is proposed. Firstly, the minimum spanning tree (MST) algorithm is used to determine the skeleton network of a power system. Secondly, the number of subsystems is determined according to the number of black-start units. Based on the skeleton network, candidate boundary lines among subsystems are identified. Then, constraints are evaluated to identify feasible sectionalizing schemes. Except commonly used constraints on power balancing and black-start units, this paper also considers using dispatchable loads to meet the minimum output requirements of generating units. Finally, the sectionalizing scheme with the minimum SRT is selected as the final solution. The effectiveness of the proposed method is validated by the IEEE 39-bus and 118-bus test systems. The simulation results indicate that the proposed method can balance the restoration time of subsystems and minimize the SRT.
机译:并行恢复是在停电后加快电力系统的黑启动过程的一种方法。考虑到黑启动能力,子系统的发电-负载平衡,分支的恢复时间,发电机组的启动时间以及可分派负载和故障设备的影响,有效的分段方案可以减少系统的恢复时间。 。解决分段问题具有挑战性,因为它需要处理大量的布尔变量,这些布尔变量对应于与系统拓扑相关的分支和非线性约束。本文研究了并行恢复的电力系统分段问题,以最大程度地减少系统恢复时间(SRT)。提出了一种考虑发电机组和电网支路恢复的分段方法。首先,采用最小生成树(MST)算法确定电力系统的骨架网络。其次,根据黑启动单元的数量确定子系统的数量。基于骨架网络,确定子系统之间的候选边界线。然后,评估约束条件以识别可行的分段方案。除了常用的功率平衡和黑启动机组约束外,本文还考虑使用可调度负荷来满足发电机组的最低输出要求。最后,选择具有最小SRT的分段方案作为最终解决方案。 IEEE 39总线和118总线测试系统验证了该方法的有效性。仿真结果表明,该方法可以平衡子系统的恢复时间,并最大程度地减少SRT。

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