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System design and policy suggestion for reducing electricity curtailment in renewable power systems for remote islands

机译:减少偏远岛屿可再生能源系统电力消耗的系统设计和政策建议

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摘要

In renewable power systems for remote islands, a significant amount of electricity is curtailed for power balance. This study examines the effect of reducing electricity curtailment on optimal renewable power system design for remote islands. A Mixed-Integer Linear Programming problem for obtaining the optimal design of remote renewable power systems is formulated with an additional constraint which limits the total electricity curtailment. For a parametric study, the problem is solved with various values of electricity curtailment limit, for four cases; two islands - one with a higher and the other with a lower capacity factor of wind turbines - in South Korea, and two renewable power penetrations - 60% and 90% - in the two islands. Variations in the optimal capacities of photovoltaic panels, wind turbines, and batteries for limited total electricity curtailment are examined for every case. Reasons of the variations are explained by an analysis on the temporal operation profiles of the remote renewable power systems. In addition, the appropriate upper limit of total electricity curtailment considering cost increment, normalized by the total electricity demand, is newly suggested as a function of renewable power penetration to guide policy design.
机译:在偏远岛屿的可再生能源系统中,为了实现电力平衡,减少了大量电力。本研究探讨了减少电力削减对偏远岛屿的最佳可再生能源系统设计的影响。为了获得远程可再生能源系统的最佳设计,提出了一个混合整数线性规划问题,该问题带有一个额外的约束条件,该约束条件限制了总用电量。对于参数研究,可以通过四种情况下的各种限电限值解决问题。韩国有两个岛-一个岛的风力涡轮机容量较高,另一个岛的风力涡轮机容量因子较低,两个岛的两个可再生能源普及率分别为60%和90%。在每种情况下,都要检查光伏电池板,风力涡轮机和电池在限制总用电量方面的最佳容量变化。通过分析远程可再生能源系统的时间运行概况来解释变化的原因。此外,根据可再生能源的普及程度,最近建议将考虑了成本增加的适当的总电力削减上限(由总电力需求归一化)来指导政策设计。

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