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A proposed method for design of test cases for economic analysis in power systems

机译:电力系统经济分析测试用例的设计方法

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Nowadays, in power systems, we still lack the existence of standardized test systems that can be used to benchmark the performance and solution quality of proposed optimization techniques. Several authors report that the electric load pattern is very complex. It is therefore necessary to develop new methods for design of test cases for economic analysis in power systems. Therefore, we compared two methods to generate test systems: time series model and a method simulating stable random variables based on the use of Chambers-Mallows-Stuck. This paper describes a method for simulating stable random variables in the generation of test systems for economic analysis in power systems. A study focused on generating test electrical systems through stable distribution to model for unit commitment problem in electrical power systems. Usually, the instances of test systems in unit commitment are generated using normal distribution, but the behavior of electrical demand does not follow a normal distribution; in this work, simulation data are based on a new method. For empirical analysis, we used three original systems to obtain the demand behavior and thermal production costs. Numerical results illustrate the applicability of the proposed method by solving several unit commitment problems directly and through the Lagrangian relaxation of the original problem.
机译:如今,在电力系统中,我们仍然缺乏可用于对建议的优化技术的性能和解决方案质量进行基准测试的标准化测试系统。几位作者报告说,电负载模式非常复杂。因此,有必要开发新的方法来设计用于电力系统经济分析的测试用例。因此,我们比较了两种生成测试系统的方法:时间序列模型和一种基于Chambers-Mallows-Stuck的模拟稳定随机变量的方法。本文介绍了一种在电力系统经济分析测试系统生成过程中模拟稳定随机变量的方法。一项研究着重于通过稳定的分布生成测试电气系统,以对电力系统中的机组承诺问题进行建模。通常,单位承诺中的测试系统实例是使用正态分布生成的,但是用电需求的行为却不遵循正态分布;在这项工作中,仿真数据是基于一种新方法的。为了进行实证分析,我们使用了三个原始系统来获得需求行为和热生产成本。数值结果通过直接解决几个单位承诺问题并通过拉格朗日松弛原始问题来说明所提出方法的适用性。

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