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Integration Capability Evaluation of Wind and Photovoltaic Generation in Power Systems Based on Temporal and Spatial Correlations

机译:基于时间和空间相关性的电力系统风光发电综合能力评估

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With the rapid growth of renewable energy generation, it has become essential to give a comprehensive evaluation of renewable energy integration capability in power systems to reduce renewable generation curtailment. Existing research has not considered the correlations between wind power and photovoltaic (PV) power. In this paper, temporal and spatial correlations among different renewable generations are utilized to evaluate the integration capability of power systems based on the copula model. Firstly, the temporal and spatial correlation between wind and PV power generation is analyzed. Secondly, the temporal and spatial distribution model of both wind and PV power generation output is formulated based on the copula model. Thirdly, aggregated generation output scenarios of wind and PV power are generated. Fourthly, wind and PV power scenarios are utilized in an optimal power flow calculation model of power systems. Lastly, the integration capacity of wind power and PV power is shown to be able to be evaluated by satisfying the reliability of power system operation. Simulation results of a modified IEEE RTS-24 bus system indicate that the integration capability of renewable energy generation in power systems can be comprehensively evaluated based on the temporal and spatial correlations of renewable energy generation.
机译:随着可再生能源发电的快速增长,对电力系统中的可再生能源集成能力进行全面评估以减少可再生能源的削减已变得至关重要。现有研究尚未考虑风能和光伏(PV)功率之间的相关性。本文利用不同可再生代之间的时间和空间相关性,基于copula模型评估电力系统的集成能力。首先,分析了风力发电与光伏发电之间的时间和空间相关性。其次,基于copula模型建立了风电和光伏发电输出的时空分布模型。第三,生成风能和光伏发电的总发电输出情景。第四,在电力系统的最佳潮流计算模型中利用了风能和光伏发电场景。最后,通过满足电力系统运行的可靠性,可以评估风能和光伏发电的集成能力。修改后的IEEE RTS-24总线系统的仿真结果表明,可以基于可再生能源发电的时间和空间相关性,全面评估电力系统中可再生能源发电的集成能力。

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