克里特岛岛屿电力系统中混合电站的集成

A. Ntomaris, S. I. Vagropoulos, A. Bakirtzis
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引用次数: 5

摘要

气候变化和化石自然资源的减少促使世界各国政府鼓励开发可用的可再生能源(RES)。饱和的岛屿系统已经开发了相当数量的可用可再生能源潜力。然而,传统发电机组的技术限制限制了可再生能源的进一步发展。由抽水蓄能单元组成的混合电站(hps)弥补了可再生能源发电的可变性,已被视为提高大中型岛屿系统中可再生能源渗透水平的一种新兴方法。本文根据希腊最近建立的非互联岛屿系统的监管框架,开发了孤立电力系统日前调度的优化模型。在克里特岛电力系统中进行了不同尺寸高压水泵的年度仿真,验证了该方法的有效性。给出了仿真结果并进行了深入的讨论。
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Integration of a hybrid power station in the insular power system of Crete
Climate change and diminishing fossil natural resources have motivated governments worldwide to incentivize the exploitation of the available renewable energy sources (RES). Saturated island systems have already exploited considerable amounts of the available renewable energy potential. However, technical limitations imposed by the conventional generation fleet restrict further RES development. Hybrid power stations (HPSs) consisting of pumped storage units that compensate for the variability of the renewable power generation have been seen as an emerging method to increase renewable penetration levels in medium and large size island systems. The paper develops an optimization model for the day-ahead scheduling of isolated power systems, according to the recently established regulatory framework for the non-interconnected island systems of Greece. An annual simulation with HPSs of different sizes is carried out in the insular power system of Crete to show the effectiveness of the proposed method. Simulation results are presented and discussed thoroughly.
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