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Direct methods for transient stability assessment in power systems comprising controllable series devices

机译:包含可控串联设备的电力系统暂态稳定性评估的直接方法

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In this paper, new energy functions that incorporate the action of controllable series devices (CSDs) are presented. They make it possible for the direct method to acquire the critical clearing time (CCT) of a single machine-infinite bus (SMIB) power system and the certain series flexible AC transmission systems (FACTS) devices directly. Dealing with this matter, optimal control strategies for the controllable series compensation (CSC) and the static synchronous series compensator (SSSC) are first derived. These and later tasks make use of the advantages of mathematical models which represent the controllable parameter of a FACTS device in relation to the transmitted real power through the given line. Using the derived control laws and some assumptions, Lyapunov-like energy functions were carried out. The results of a numerical example attained by a direct method and a digital simulation are shown to be promising. The final consideration suggests where future efforts should be directed.
机译:在本文中,提出了结合可控串联设备(CSD)作用的新能源功能。它们使直接方法有可能直接获取单个机器无限总线(SMIB)电力系统和某些串联柔性交流输电系统(FACTS)设备的临界清除时间(CCT)。针对这一问题,首先提出了可控串联补偿(CSC)和静态同步串联补偿器(SSSC)的最优控制策略。这些和以后的任务利用数学模型的优点,这些数学模型代表FACTS设备相对于通过给定线路传输的有功功率的可控制参数。使用导出的控制定律和一些假设,进行了像Lyapunov的能量函数。通过直接方法和数字仿真获得的数值示例的结果表明是有希望的。最后的考虑建议应在将来的工作方向。

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