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On the Use of Pumped Storage for Wind Energy Maximization in Transmission-Constrained Power Systems

机译:关于在输电受限的电力系统中利用抽水蓄能最大化风能

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Owing to wind power inherent characteristics and technical constraints of power systems operation, a considerable amount of wind energy cannot be delivered to load centers and gets curtailed. Transmission congestion together with temporal mismatch between load and available wind power can be accounted as the main reasons for this unpleasant event. This paper aims to concentrate on the wind energy curtailment for which it provides a combinatorial planning model to maximize wind power utilization. Jointly operating the wind power generation system with pumped hydro energy storage (PHES), the planning procedure tries to reach schemes with the minimum level of wind energy curtailment as well as low imposed cost of transmission network reinforcement. In this regard, a well-organized posterior multi-objective (MO) optimization framework is proposed aimed to properly deal with wind energy curtailment cost, total social cost, and also storage units' revenue as some unavoidable factors in planning studies of power systems. The presented method is conducted on the modified IEEE Reliability Test System (IEEE-RTS) and the obtained results introduce its applicability and efficiency in planning procedure of the renewable-based power systems.
机译:由于风能的固有特性和电力系统运行的技术限制,因此大量风能无法传递到负荷中心并受到限制。输电拥堵以及负载与可用风力之间的时间不匹配可能是造成这种不愉快事件的主要原因。本文旨在专注于减少风能,为此它提供了一种组合规划模型,以最大程度地利用风能。通过与抽水蓄能(PHES)联合运行风力发电系统,规划程序将力争达到减少风能削减水平最低,输电网络加固成本较低的计划。在这方面,提出了一个组织良好的后验多目标(MO)优化框架,旨在妥善处理风能削减成本,总社会成本以及存储单元的收入,这是电力系统规划研究中不可避免的因素。该方法是在改进的IEEE可靠性测试系统(IEEE-RTS)上进行的,所获得的结果介绍了其在可再生能源电力系统规划过程中的适用性和效率。

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