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Computationally Efficient Adjustment of FACTS Set Points in DC Optimal Power Flow With Shift Factor Structure

机译:具有偏移因子结构的直流最优潮流中FACTS设定点的计算有效调整

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Enhanced utilization of the existing transmission network is a cheaper and paramount alternative to building new transmission lines. Flexible ac transmission system (FACTS) devices are advanced technologies that offer transfer capability improvements via power flow control. Although many FACTS devices exist in power systems, their set points are not frequently changed for power flow control purposes, which is mainly due to the computational complexity of incorporating FACTS flexibility within the market problem. This paper proposes a computationally efficient method for adjustment of variable impedance-based FACTS set points, which is also compatible with existing market solvers. Thus, the method can be employed by the existing solvers with minimal modification efforts. This paper models FACTS reactance control as injections to keep the initial shift factors unchanged. Next, the paper formulates a dc optimal power flow that co-optimizes FACTS set points alongside generation dispatch. The resulting problem, which is in a nonlinear program, is then reformulated to a mixed-integer linear program. Finally, an engineering insight is leveraged to further reduce the computational complexity to a linear program. Simulation studies on IEEE 118-bus and Polish 2383-bus test cases show that the method is extremely effective in finding quality solutions and being very fast.
机译:增强现有传输网络的利用率是构建新传输线的一种更便宜,更重要的选择。灵活的交流传输系统(FACTS)设备是先进的技术,可通过潮流控制提高传输能力。尽管电力系统中存在许多FACTS设备,但是出于功率流控制的目的,它们的设定点并不经常更改,这主要是由于将FACTS灵活性纳入市场问题而导致的计算复杂性。本文提出了一种计算有效的方法来调整基于可变阻抗的FACTS设定点,该方法也与现有的市场求解器兼容。因此,该方法可以由现有求解器以最小的修改努力来采用。本文将FACTS电抗控制建模为进样,以保持初始偏移因子不变。接下来,本文制定了直流最优功率流,该最优功率流与发电调度一起共同优化了FACTS设定点。非线性程序中的结果问题然后被重新表述为混合整数线性程序。最后,利用工程洞察力进一步降低了线性程序的计算复杂度。对IEEE 118总线和波兰2383总线测试用例的仿真研究表明,该方法在寻找优质解决方案方面非常有效,而且速度非常快。

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