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Computer controlled passive networks for control of power flow on the interconnected grid

机译:计算机控制的无源网络,用于控制互连电网上的潮流

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Conventional wisdom says that a solid-state AC/DC/AC power conversion system must be used between tie points if systems are nonsynchronized, or if they are synchronized but the angles between the two would allow an unacceptable power flow. This paper shows that interconnecting points of a synchronized system through computer controlled passive networks allows arbitrary power flow control in either direction which can be continuously changed as needed. Network design criteria are developed. A sample case is discussed. The flow diagram of a computer program is presented that gives predetermined power flows in either direction. Only static capacitors and continuously variable inductors are required because a variable inductor plus a static capacitor can be made to represent a variable capacitor. Design criteria for MVAr sized variable inductors utilizing computer controlled variable air gaps are presented. Application of this technology would provide much greater flexibility in load dispatching as well as the optimization of existing transmission lines. It is particularly relevant in an era of deregulation where power sources and transmission systems may be independent.
机译:传统观点认为,如果系统不同步或同步,则必须在连接点之间使用固态AC / DC / AC电源转换系统,但是两者之间的夹角会导致无法接受的电流通过。本文显示,通过计算机控制的无源网络将同步系统的互连点互连,可以在任一方向上任意控制潮流,并可以根据需要对其进行连续更改。制定网络设计标准。讨论了一个示例案例。给出了计算机程序的流程图,该计算机程序给出了任一方向的预定功率流。仅需要静态电容器和连续可变电感器,因为可以使可变电感器加上静态电容器来代表可变电容器。提出了利用计算机控制的可变气隙的MVAr尺寸可变电感器的设计标准。这项技术的应用将为负载分配以及现有传输线的优化提供更大的灵活性。在电源和传输系统可能独立的放松管制时代,这一点尤其重要。

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