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Operations- and Uncertainty-Aware Installation of FACTS Devices in a Large Transmission System

机译:大型传输系统中FACTS设备的操作和不确定性安装

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Decentralized electricity markets and greater integration of renewables demand expansion of the existing transmission infrastructure to accommodate inflected variabilities in power flows. However, such expansion is severely limited in many countries because of political and environmental issues. Furthermore, high renewables integration requires additional reactive power support, which forces the transmission system operators to utilize the existing grid creatively, for example, take advantage of new technologies, such as flexible alternating current transmission system (FACTS) devices. We formulate, analyze, and solve the challenging investment planning problem of installation in existing large-scale transmission grid multiple FACTS devices of two types (series capacitors and static var compensators). We account for details of the ac character of power flows, probabilistic modeling of multiple load scenarios, FACTS devices flexibility in terms of their adjustments within the capacity constraints, and long-term practical tradeoffs between capital versus operational expenditures. It is demonstrated that proper installation of the devices allows to do both-extend or improve the feasibility domain for the system and decrease long-term power generation cost (make cheaper generation available). Nonlinear, nonconvex, and multiple-scenario-aware optimization is resolved through an efficient heuristic algorithm consisting of a sequence of quadratic programmings solved by CPLEX combined with exact ac power flow resolution for each scenario for maintaining feasible operational states during iterations. Efficiency and scalability of the approach are illustrated on the IEEE 30-bus model and the 2736-bus Polish model from Matpower.
机译:电力市场的分散化和可再生能源的进一步整合要求扩大现有输电基础设施,以适应潮流变化带来的变化。但是,由于政治和环境问题,这种扩展在许多国家受到严重限制。此外,高可再生能源的整合需要额外的无功功率支持,这迫使输电系统运营商创造性地利用现有电网,例如,利用诸如灵活交流输电系统(FACTS)设备之类的新技术。我们制定,分析并解决现有的大型输电网中安装多种FACTS两种装置(串联电容器和静态无功补偿器)的投资计划难题。我们考虑了潮流交流特性,多种负载情况的概率建模,FACTS设备在容量限制内的调整方面的灵活性以及资本与运营支出之间的长期实际权衡等细节。事实证明,正确安装设备可以扩展或改善系统的可行性范围,并降低长期发电成本(使更便宜的发电可用)。通过高效的启发式算法解决非线性,非凸性和多场景感知的优化问题,该算法包括一系列CPLEX求解的二次规划程序,结合每种情况的精确交流功率流分辨率,以在迭代过程中维持可行的工作状态。 Matpower的IEEE 30总线模型和2736总线波兰模型说明了该方法的效率和可扩展性。

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