Security Constrained Unit Commitment and Economic Dispatch by AC Sensitivity Factors

Gioacchino Tricarico, Raju Wagle, L. S. Azuara-Grande, F. Gonzalez-Longatt, M. Dicorato, G. Forte, J. Rueda
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Abstract

The dispatch schedule of the electrical power plant units is the result of the solution to the unit commitment optimisation problem, and it minimises the cost of production considering pre-defined technical limits. The security-constrained unit commitment problem has been defined as including the network constraints in the previously mentioned optimisation problem to obtain a feasible power system solution. The traditional security-constrained unit commitment methods are based on the DC-power flow model, where the network losses and voltage magnitudes are neglected in the problem formulation. This paper proposed a bi-stage security-constrained unit commitment with an economic dispatch (SCUCED) optimisation problem. A merit-order-based zonal day-ahead market problem is solved in the first stage to define a preliminary generation commitment. In the second stage, the SCUCED is solved based on the AC-power flow model and sensitivity factors to embed the full network representation in the optimisation problem. In this paper, the proposed method is illustrated by an application to a modified version of the IEEE 39-bus test system.
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基于交流敏感性因素的安全约束机组承诺与经济调度
电厂机组调度调度是机组承诺优化问题解决的结果,它考虑了预先设定的技术限制,使生产成本最小化。安全约束的机组承诺问题被定义为在前面提到的优化问题中包含网络约束,以获得可行的电力系统解。传统的安全约束机组承诺方法基于直流潮流模型,在问题的表述中忽略了网络损耗和电压幅值。提出了一种具有经济调度优化问题的双阶段安全约束机组承诺。第一阶段解决了基于优序的区域日前市场问题,确定了初步发电承诺。在第二阶段,基于交流潮流模型和灵敏度因子求解SCUCED,将全网络表示嵌入优化问题中。本文以一个改进版的IEEE 39总线测试系统为例,说明了该方法的可行性。
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