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Decentralized stability-enhancing control of synchronous generator

机译:同步发电机的分散增稳控制

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This paper describes new structures for stability-enhancing excitation controllers designed using a nonlinear multi-machine system model and Lyapunov's direct method. Two control structures are presented: a hierarchical structure In which the AVR is the master controller and the PSS the slave controller and a traditional structure in which the PSS constitutes a supplementary loop to the main AVR. Both controllers are shown to be robust, as the damping they introduce into the system is insensitive to changes in both the system topology/parameters and the pattern of network flows. Each individual controller contributes positively to the overall system damping with no undesirable interaction between controllers. These features should allow a decentralized approach to the design of the AVR+PSS. Such a design approach is compatible with the new competitive market structures and should result in savings on commissioning costs. Simulation results for a multi-machine power system are presented that confirm the above and show that the two control structures are very effective in damping both local and inter-area power swings.
机译:本文介绍了使用非线性多机系统模型和Lyapunov直接方法设计的,用于增强稳定性的励磁控制器的新结构。提出了两种控制结构:分层结构(其中AVR是主控制器,PSS是从属控制器)和传统结构,其中PSS构成了主AVR的补充回路。这两个控制器均显示出强大的功能,因为它们引入系统的阻尼对系统拓扑/参数和网络流量模式的变化均不敏感。每个单独的控制器都对整个系统的阻尼有积极的贡献,控制器之间没有任何不希望的相互作用。这些功能应允许采用分散式方法来设计AVR + PSS。这种设计方法与新的竞争市场结构兼容,并应节省调试成本。给出的多机动力系统仿真结果证实了上述观点,并表明这两种控制结构在阻尼局部和区域间动力摆幅方面非常有效。

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