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Power System Reliable Stabilization With Actuator Failure

机译:具有执行器故障的电力系统可靠稳定

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This article presents a new approach to design reliable controllers acting on the excitation and governor of a synchronous alternator. The usage of a power system stabilizer is inevitable for the enhancement of dynamic stability of power grids. The suggested reliable power system stabilizer ensures stability either when both controllers are sound or when one of them fails. A redundant feedback controller is designed using particle swarm optimization to achieve a desired degree of stability whether or not the main controller is responding. The design of the redundant controller is based on minimizing an eigenvalue-based objective function using particle swarm optimization. A single-machine infinite-bus system is considered to demonstrate the functionality of the proposed fault-tolerant controller. Results of the eigenvalue analysis reported in the present article show the effectiveness of the proposed power system stabilizer under different loading conditions. The approach is extended to consider reliable stabilization for multi-machine systems where the designed controller could successfully stabilize the system with sound operation as well as under control channel failure.
机译:本文提出了一种设计可靠的控制器的新方法,该控制器作用于同步交流发电机的励磁和调速器。为了增强电网的动态稳定性,不可避免要使用电力系统稳定器。建议的可靠电力系统稳定器可在两个控制器均正常运行或其中一个出现故障时确保稳定性。不管主控制器是否响应,都使用粒子群优化设计冗余反馈控制器以实现所需的稳定性。冗余控制器的设计基于使用粒子群算法最小化基于特征值的目标函数。考虑使用单机无限总线系统来演示所提出的容错控制器的功能。本文报道的特征值分析结果表明,所提出的电力系统稳定器在不同负载条件下的有效性。该方法被扩展为考虑多机器系统的可靠稳定,其中设计的控制器可以通过合理的操作以及在控制通道故障的情况下成功稳定系统。

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