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Flexibility Measurement of Power System Generation for Real-Time Applications Using Analytical Hierarchy Process

机译:使用层次分析法实时测量电力系统发电的灵活性

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The purpose of this paper is to introduce a new technique to measure the flexibility of power system generation in real-time. The proposed technique uses the analytical hierarchy process to evaluate the flexibility by combining the essential power sources features. The flexibility features of minimum power, ramp-rate capability, start-up time and the controllability are expressed as a single indexed time-series. Effective flexibility measurement techniques are required because of the recent increasing penetration of variable renewable energy resources in the power systems. The proposed flexibility index copes with the complexity and difficulty of the high variability power sources by taking the index into account in the power dispatching process. Simulation studies are conducted to validate the effectiveness of the new flexibility measurement technique. The results show the success of the flexibility measurement index to represent the real value of the flexibility of each power source and also, the overall system flexibility. The measurements help the power system operators to take the right dispatching decision during the optimal set-points calculations of all sources in the electric power grid.
机译:本文的目的是介绍一种实时测量电力系统发电灵活性的新技术。所提出的技术使用分析层次过程通过结合基本电源特征来评估灵活性。最小功率,斜坡速率能力,启动时间和可控制性的灵活性特征表示为单个索引时间序列。由于近来可变的可再生能源在电力系统中的渗透越来越大,因此需要有效的灵活性测量技术。通过在功率分配过程中考虑该指标,所提出的灵活性指标可以应对高可变电源的复杂性和困难性。进行了仿真研究,以验证新的柔性测量技术的有效性。结果表明,灵活性度量指标的成功代表了每个电源的灵活性的实际价值,以及整个系统的灵活性。这些测量有助于电力系统运营商在对电网中所有电源的最佳设定点计算过程中做出正确的调度决策。

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