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Phase shifter placement in large-scale systems via mixed integer linear programming

机译:通过混合整数线性编程在大型系统中放置移相器

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This paper makes use of advances in mixed integer linear programming (MILP) to conduct a preliminary design study on the combinatorial optimal placement of thyristor controlled phase shifter transformers (TCPSTs) in large-scale power systems. The procedure finds the number, network location, and settings of phase shifters that maximize system loadability under the DC load flow model, subject to limits on the installation investment or total number of TCPSTs. It also accounts for active flow and generation limits, and phase shifter constraints. Simulation results are presented for the IEEE 24-, 118-, and 300-bus systems, as well as a 904-bus network. The principal characteristics of our approach are compared with those of other published flexible AC system transmission (FACTS) allocation methods.
机译:本文利用混合整数线性规划(MILP)的先进技术,对大型电力系统中晶闸管控制移相变压器(TCPST)的组合最优布置进行了初步设计研究。该过程将找到移相器的数量,网络位置和设置,这些设置将在DC潮流模型下最大化系统的负载能力,但要受安装投资或TCPST总数的限制。它还考虑了有效的流量和发电限制以及移相器约束。给出了针对IEEE 24-,118和300总线系统以及904总线网络的仿真结果。我们的方法的主要特征与其他已发布的灵活AC系统传输(FACTS)分配方法的特征进行了比较。

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