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首页> 外文期刊>IEE proceedings. Part C, Generation, Transmission, and Distribution >Steady-state analysis of power system having multiple FACTS devices using line-flow-based equations
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Steady-state analysis of power system having multiple FACTS devices using line-flow-based equations

机译:使用基于线流的方程式对具有多个FACTS装置的电力系统进行稳态分析

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Application of FACTS devices in power systems is promising new and more efficient operating scenarios for implementing the transfer of power in a bulk grid or RTO (regional transmission operator). With FACTS devices installed in a power system, methods based on traditional busbar-oriented power flow methods need substantial modifications for handling series line flow control as well as shunt injection powers, as evidenced in the many approaches proposed in the literature. Traditional busbar-oriented power flow algorithms use busbar voltage magnitudes and phase angles as independent variables. An alternative line-flow-and-busbar-voltage-magnitudebased formulation is shown to be more useful in solving the power system with FACTS devices under steady state conditions. Such a formulation permits much greater flexibility in evaluating the FACTS device ratings. All the common FACTS device models are easily incorporated in the new framework. The potential of the alternative formulation is demonstrated through the solution of examples with FACTS devices.
机译:FACTS设备在电力系统中的应用有望为实现大容量电网或RTO(区域传输运营商)中的电力传输提供新的,更高效的操作方案。在电力系统中安装FACTS设备后,基于传统面向母线的潮流方法的方法需要进行实质性修改,以处理串联线路流量控制以及分流注入功率,这在文献中提出了许多方法。传统的面向母线的潮流算法将母线电压幅度和相角用作独立变量。一种替代的基于线流和母线电压幅度的公式显示出在稳态条件下解决带有FACTS装置的电力系统时更有用。这样的表述允许在评估FACTS装置额定值方面具有更大的灵活性。所有常见的FACTS设备模型都可以轻松地合并到新框架中。通过FACTS装置的示例解决方案证明了替代配方的潜力。

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