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Distribution System State Estimation: A Semidefinite Programming Approach

机译:配电系统状态估计:一种半定规划方法

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摘要

Distribution system state estimation (DSSE) is one of the vital components in the next-generation distribution management system which allows operators to monitor the entire system's operating conditions. Due to the lack of real-time measurements, DSSE has to process measurements whose quality varies significantly across different sources, which causes a convergence issue to the Gauss-Newton solver. In this paper, a semidefinite programming (SDP) framework is proposed to reformulate the DSSE problem into a rank- constrained SDP problem. One challenge of this technique is the nonconvex rank-one constraint, which is generally relaxed. However, the relaxed SDP-DSSE problem cannot guarantee a rank-one solution and hence loses optimality. Therefore, we propose two solution approaches to obtain rank-one solutions for the SDPDSSE problem: the rank reduction approach and the convex iteration approach. The model and the effectiveness of the proposed solution approaches are numerically demonstrated on the IEEE 13-bus, 34-bus, and 123-bus distribution systems.
机译:配电系统状态估计(DSSE)是下一代配电管理系统中的重要组成部分,它使操作员可以监视整个系统的运行状况。由于缺乏实时测量,DSSE必须处理质量在不同来源之间差异显着的测量,这会导致高斯-牛顿求解器出现收敛问题。在本文中,提出了一个半定程序设计(SDP)框架,以将DSSE问题重新表述为秩约束SDP问题。该技术的一个挑战是非凸秩一约束,该约束通常被放松。但是,松弛的SDP-DSSE问题不能保证一级解决方案,因此失去了最优性。因此,我们提出了两种求解方法来获得SDPDSSE问题的秩一解:秩减小法和凸迭代法。在IEEE 13总线,34总线和123总线配电系统上以数字方式演示了所提出的解决方案的模型和有效性。

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