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Power flow control approach to power systems with embedded FACTS devices

机译:具有嵌入式FACTS器件的电力系统的潮流控制方法

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This paper focuses on developing an approach to steady-state power flow control of flexible AC transmission systems (FACTS) device-equipped power systems. Based on a power-injection model of FACTS devices and an optimal power flow model, a novel versatile power flow control approach is formulated, which is capable of implementing power flow control incorporating any FACTS device flexibly. Different from existing FACTS device control approaches, the active and (or) reactive power injections are taken as independent control variables. Therefore, using this method, Jacobian matrix need not be changed, although various FACTS devices possess different physical models and different control parameters. Furthermore, it enables the integration of FACTS devices into the existing power system analysis and control programs efficiently. Physical limits of the FACTS devices are also considered in the model. Numerical results on a reduced practical system and a 1500-bus practical system with various FACTS devices are presented to illustrate the vigorousness of the proposed approach.
机译:本文着重于开发一种用于装备有柔性AC传输系统(FACTS)设备的电力系统的稳态潮流控制方法。基于FACTS设备的功率注入模型和最佳功率模型,提出了一种新颖的通用功率流控制方法,该方法能够灵活地实现任何FACTS设备的功率流控制。与现有的FACTS设备控制方法不同,有功和(或)无功功率注入被视为独立的控制变量。因此,尽管各种FACTS设备具有不同的物理模型和不同的控制参数,但使用此方法无需更改雅可比矩阵。此外,它还可以将FACTS设备有效地集成到现有的电力系统分析和控制程序中。在模型中还考虑了FACTS设备的物理极限。提出了在简化的实际系统和带有各种FACTS设备的1500总线实际系统上的数值结果,以说明所提出方法的活力。

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