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Roles of Pumped Hydro Storages in Optimal Scheduling of Future Taiwan Power System with Highly Penetrated Renewable Energy Resources

机译:泵浦水电存储在未来台湾电力系统优化调度中的作用,具有高度渗透可再生能源

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Recently, Taiwanese government has announced an ambitious energy policy: up to 20 percent of total power will be generated from renewable energy resources by 2025. However, under such high-level penetration level of renewable energy resources (RER), the typical net load curve will be definitely reshaped as the duck curve and increase more challenges in power system operations. Due to the fast response and the larger capacity installation, the pumped hydro storages (PHS), which have better flexibility to provide the effective frequency regulating reserve to fast and efficiently support any electricity gaps caused by the loss of generators, has demonstrated as an efficient solution to tackle out this challenging task. In this paper, the optimal scheduling of future Taiwan power system (TPS) with highly penetrated RER and two pumped hydro storage plants is simulated by using the MATPOWER optimal scheduling tool MOST. Scenario studies under various penetration level of RER and different load levels are conducted. These scenario studies indicate the existing PHS in TPS can contribute the generator scheduling of future TPS under highly penetrated RER even under the net load curve with the duck curve.
机译:近日,台湾政府已宣布了一项雄心勃勃的能源政策:最多将来自可再生能源,到2025年不过总发电量的20%,在可再生能源(RER),典型的净负荷曲线这样高层次的普及率将肯定重塑为鸭曲线,提高电力系统运行更多的挑战。由于快速响应和较大的容量安装,抽水蓄能存储器(PHS),它们具有更好的灵活性,以提供有效的频率调节储备快速和有效地支持所引起的发电机的损失的任何电力的间隙,已经证明作为一种高效解决方案,以解决这项具有挑战性的任务。在本文中,未来的台湾电力系统的优化调度(TPS)与高度渗透的RER和两个抽水蓄能电站是通过使用MATPOWER优化调度工具MOST模拟。下RER和不同负荷水平的各种渗透级方案研究的进行。这些情况的研究表明在TPS现有的小灵通,即使在同鸭曲线的净负荷曲线下高度渗透的RER有助于未来TPS的发电调度。

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