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首页> 外文期刊>International journal of electrical power and energy systems >Incorporating unified interphase power controllers into robust multi-period transmission expansion planning to mitigate short-circuit level
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Incorporating unified interphase power controllers into robust multi-period transmission expansion planning to mitigate short-circuit level

机译:将统一的相间功率控制器纳入稳健的多周期传输扩展计划中,以减轻短路水平

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With continuously increasing power demands, installed generation capacity and scale of the transmission grid, suppressing the short-circuit level is an inevitable necessity. In this paper, the authors present a new robust multi-period model developed for transmission expansion planning (TEP) in the presence of unified interphase power controllers (UIPCs) to mitigate the short-circuit level. UIPCs represent one of the promising short-circuit-level suppressing FACTS devices that could flexibly and reliably maintain their desirable performance under both normal and fault conditions. The proposed planning model is outlined using a bi-level optimization problem. The TEP objectives, modeled through the upper-level problem, are the minimization of the investment and congestion costs, while satisfying long- and short-term constraints over the planning horizon. In this problem, a potent information-gap decision theory was also employed to tackle the risks of planning that stem from severe uncertainties in predicted demand and estimated capital expenditure budget. The lower-level problem, however, acts as a central core of the upper-level problem, and its target is the maximization of the community welfare function under both normal and fault conditions. To solve the proposed large-scale mixed-integer nonlinear bi-level model, a powerful symphony orchestra search algorithm was used. The proposed planning methodology was applied to the modified 400-kV 52-bus Iranian power grid and IEEE 138/230-kV 24-bus reliability test system; its sufficiency and profitableness will be demonstrated by exhaustive case studies.
机译:随着电力需求,装机容量和输电网络规模的不断增加,抑制短路水平是必然的。在本文中,作者提出了一种在存在统一相间功率控制器(UIPC)的情况下为传输扩展计划(TEP)开发的新的鲁棒多周期模型,以减轻短路水平。 UIPC代表了有希望的短路电平抑制FACTS器件之一,该器件可以在正常和故障条件下灵活,可靠地保持其理想的性能。使用双层优化问题概述了提出的计划模型。通过上层问题建模的TEP目标是最大程度地降低投资和拥堵成本,同时满足计划范围内的长期和短期约束。在此问题中,还采用了有效的信息鸿沟决策理论来解决由于预测需求和估计资本支出预算存在严重不确定性而产生的计划风险。然而,下层问题是上层问题的核心,其目标是在正常和过失情况下最大化社区福利功能。为了解决所提出的大规模混合整数非线性双层模型,使用了强大的交响乐团搜索算法。拟议的规划方法应用于改进的400 kV 52总线伊朗电网和IEEE 138/230 kV 24总线可靠性测试系统;详尽的案例研究将证明其充分性和赢利性。

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