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Impact of hybrid wind and hydroelectric power generation on the operational performance of isolated power systems

机译:混合风力和水力发电对隔离电力系统运行性能的影响

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In recent years, electric power systems are adopting new technologies in their structure in order to achieve better performance and efficiency in the electricity production, transmission and distribution. This fact together with additional financial incentives being developed in many countries have increased considerably the number of power generating units using renewable energy sources. However, a major drawback of these units is their dependency on unexpected weather conditions such as the wind speed and the rainfalls in the respective hydrologic areas. The purpose of this paper is to investigate the impact of wind parks and hydroelectric power plants on the reliability and operational performance of isolated power systems. A probabilistic methodology has been developed for simulating more efficiently and realistically the reliability and operational performance of these power systems. This is an effective computational methodology that is based on the Monte-Carlo sequential simulation approach and it evaluates the reliability and operational indices of the conventional thermal and hydroelectric power plants, the wind parks and the overall indices of the system. An appropriate model based on the power system of a Greek island is used and the obtained results are presented for a number of case studies representing various planning and operating schemes in order to deduce the optimal one.
机译:近年来,电力系统在其结构中采用新技术,以便在电力生产,输电和配电中获得更好的性能和效率。这一事实以及许多国家正在制定的其他财政激励措施,大大增加了使用可再生能源的发电装置的数量。但是,这些单元的主要缺点是它们依赖于意外的天气状况,例如各个水文地区的风速和降雨。本文的目的是研究风电场和水力发电厂对隔离电力系统的可靠性和运行性能的影响。已经开发了一种概率方法,用于更有效,更实际地模拟这些电源系统的可靠性和运行性能。这是一种有效的计算方法,该方法基于蒙特卡洛顺序仿真方法,可评估常规火力发电厂和水力发电厂,风电场的可靠性和运行指标以及系统的整体指标。使用了基于希腊岛屿电力系统的合适模型,并针对代表各种规划和运营方案的大量案例研究给出了获得的结果,以便得出最佳方案。

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