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A MIQCP formulation to solve the unit commitment problem for large-scale power systems

机译:MIQCP公式可解决大型电力系统的机组承诺问题

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In this paper, a mixed integer quadratically constrained program to solve the unit commitment problem is presented. It is the most complete model found in the literature until now and it can be used to solve real-life, large-scale power systems. The model considers thermal conventional plants, independent power producers, interruptible loads, and a simplified representation of combined cycle plants and hybrid combined cycle plants using the aggregated model. The objective function includes variable generation costs and fixed start-up costs. Important constraints like spinning reserve, power flows in tie-lines, and quadratic fuel consumption constraints are included, among others. Also, the status of every single unit is considered; if the unit is available, if the unit can be committed, and if the unit can be dispatched. The model is implemented in Intel (R) Fortran 11.0 and solved using the commercial optimization software IBM CPLEX 12.1. To prove the usefulness of the formulation, a real life power system is solved for a twenty-four hour planning horizon based on the nodal representation of the Mexican Power System.
机译:本文提出了一种混合整数二次约束程​​序来解决单位承诺问题。它是迄今为止文献中发现的最完整的模型,可用于解决现实生活中的大型电源系统。该模型考虑了常规热电厂,独立发电商,可中断负载以及使用汇总模型的联合循环电厂和混合联合循环电厂的简化表示。目标函数包括可变的发电成本和固定的启动成本。除其他外,还包括重要的约束条件,例如旋转储备,联络线中的功率流以及二次燃料消耗约束。另外,还要考虑每个单元的状态。如果该单元可用,是否可以提交该单元以及是否可以调度该单元。该模型在Intel(R)Fortran 11.0中实现,并使用商业优化软件IBM CPLEX 12.1进行了求解。为了证明该公式的有用性,根据墨西哥电力系统的节点表示形式,针对二十四小时规划范围解决了现实生活中的电力系统。

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