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A Functionally Reconstructed and Refined Power Flow Algorithm for FACTS Devices

机译:用于事实设备的功能重建和精细功率流算法

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A positive shift in the power transfer capacity (PTC) of a transmission line and a conclusive comparison on PTC advancement accomplished through the introduction of the proposed refined model which signifies the functional resemblance of the conventional Flexible AC Transmission System (FACTS) devices is presented. A comprehensive load flow model that allows flexibility on voltage regulation and real power injection is introduced. In this model, the firing angle of Thyristor-Controlled Series Capacitor (TCSC), the nodal voltage magnitude, and the corresponding phase angle of the Static Synchronous Compensator (STATCOM) are regarded as the control variables which are compounded with the entire network and a unified iterative solution is realized through a Newton-Raphson method. Also, in this model, the power consumed by STATCOM to compensate for the internal losses is accounted and ambiguity of operation of TCSC near resonant point is surmounted. A corresponding case study has also been implemented on the IEEE 30-bus system.
机译:呈现了通过引入拟议的精细模型来实现的传输线的电力传输能力(PTC)的正换档和关于PTC进步的结论性比较,这意味着表示传统的灵活AC传输系统(事实)器件的功能相似性。介绍了一种允许对电压调节和实际功率注入的灵活性的综合负载流模型。在该模型中,晶闸管控制串联电容器(TCSC)的发射角度,节点电压幅度和静态同步补偿器(Statcom)的相应相位角被认为是与整个网络复合的控制变量和A通过牛顿Raphson方法实现统一的迭代解决方案。此外,在该模型中,STATCOM消耗的功率以补偿内部损耗的核对,并且TCSC的操作近谐振点差价是克服的。 IEEE 30-Bus系统还实现了相应的案例研究。

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