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Measurement-Based Real-Time Security-Constrained Economic Dispatch

机译:基于测量的实时安全约束的经济调度

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In this paper, we propose a measurement-based approach to the real-time security-constrained economic dispatch (SCED). The real-time SCED is a widely used market scheduling tool that seeks to economically balance electricity supply and demand and provide locational marginal prices (LMPs), while ensuring system reliability standards are met. To capture network flows and security considerations, the conventional SCED formulation relies on sensitivities that are typically computed from a linearized power flow model, which is vulnerable to phenomena such as undetected topology changes, changes in the system operating point, and the existence of incorrect model data. Our approach to the formulation of the SCED problem utilizes power system sensitivities estimated from phasor measurement unit (PMU) measurements. The resulting measurement-based real-time SCED is robust against the aforementioned phenomena. Moreover, the dispatch instructions and LMPs calculated with the proposed measurement-based SCED accurately reflect real-time system conditions and security needs. We illustrate the strengths of the proposed approach via several case studies.
机译:在本文中,我们提出了一种基于度量的实时安全受限经济调度(SCED)方法。实时SCED是一种广泛使用的市场调度工具,旨在在确保满足系统可靠性标准的同时,经济地平衡电力供需并提供地区边际电价(LMP)。为了捕获网络流量和安全性考虑,传统的SCED公式依赖于通常从线性潮流模型计算出的灵敏度,该灵敏度容易受到诸如未检测到的拓扑变化,系统工作点变化以及存在错误模型等现象的影响。数据。我们解决SCED问题的方法利用了根据相量测量单元(PMU)测量值估算的电力系统灵敏度。所得的基于测量的实时SCED对上述现象具有鲁棒性。此外,使用基于测量的SCED提出的调度指令和LMP可以准确反映实时系统状况和安全需求。我们通过几个案例研究来说明所提出方法的优势。

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