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Robust pseudo-measurement modeling for three-phase distribution systems state estimation

机译:三相配电系统状态估计的鲁棒伪测量建模

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摘要

Trending integration of distributed energy resources calls for state estimation at the distribution level for providing reliable power systems information. In contrast to transmission systems, distribution systems are sparsely monitored, and consequently difficult to estimate states. To address measurement scarcity problem in distribution systems, this paper proposes a distribution system state estimation framework that relies on robust pseudo-measurement modeling. User-level metering data is used to train gradient boosting tree models for generating pseudo-measurements. A ladder iterative state estimator is then applied on the pseudo-measurements to solve for system states. Simulation studies are performed on the IEEE 13-bus and 123-bus test feeders. Numerical results demonstrate that the proposed state estimation scheme outperform two benchmark approaches in terms of accuracy (error), consistency (error variance) and robustness (high accuracy subject to load changes).
机译:分布式能源的趋势集成要求在分布级别进行状态估计,以提供可靠的电力系统信息。与传输系统相比,配电系统受到稀疏监视,因此难以估计状态。为了解决配电系统中的测量稀缺问题,本文提出了一种基于鲁棒伪测量建模的配电系统状态估计框架。用户级别的计量数据用于训练梯度提升树模型以生成伪测量。然后将梯形迭代状态估计器应用于伪测量以求解系统状态。仿真研究是在IEEE 13总线和123总线测试馈线上进行的。数值结果表明,所提出的状态估计方案在准确性(误差),一致性(误差方差)和鲁棒性(受负载变化影响的高精度)方面优于两种基准测试方法。

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