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A Convex Three-Stage SCOPF Approach to Power System Flexibility With Unified Power Flow Controllers

机译:用统一电流控制器电力系统灵活性的凸三阶段SCOPF方法

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This paper proposes a methodology for enhancing the power system flexibility, which can respond properly to contingencies in real-time operations. The proposed approach introduces a unified power flow controller (UPFC) in a three-stage security-constrained optimal power flow (SCOPF). The pre- and post-contingency system operation states are divided into three stages including the base case, post-contingency short-term, and post-contingency long-term periods. The UPFC applications re-route active power flow and provide reactive power to mitigate overloads and voltage violations when line outages occur in power systems. UPFC is adopted as a fast-response corrective control device during the post-contingency short-term period, which is coordinated with the conventional slow-response corrective control system during the post-contingency long-term period. A convex approach is applied to reformulate the original nonlinear nonconvex SCOPF problem into a second-order cone programming (SOCP) problem. A two-level algorithm using Benders decomposition and sequential cone programming (SCP) is applied to solve the large-scale SOCP problem. An improved covering cut bundle (CCB) strategy is proposed to accelerate the convergence of the Benders decomposition algorithm. Numerical results show the effectiveness of the proposed model and its solution technique for enhancing the power system flexibility.
机译:本文提出了一种提高电力系统灵活性的方法,可以在实时操作中正确响应突发事件。所提出的方法在三级安全受限的最佳功率流(SCOPF)中引入了统一的电力流量控制器(UPFC)。应急后系统运营状态分为三个阶段,包括基本案例,应急后短期和应急后的长期期。 UPFC应用程序重新路由有效电流,并在电力系统中发生线路中断时,为减轻过载和电压违规的无功功率。在应急后的短期期间,在应急后的短期期间采用Fupfc作为快速响应校正控制装置,这在应急后的长期期间与传统的慢响应校正控制系统协调。应用凸面方法以将原始非线性非核解SCOPF问题重新定制到二阶锥编程(SOCP)问题中。应用了使用弯曲分解和顺序锥编程(SCP)的两级算法来解决大规模的SOCP问题。提出了一种改进的覆盖束(CCB)策略以加速弯曲分解算法的收敛性。数值结果表明了提出模型及其解决方案技术提高电力系统灵活性的有效性。

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