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Delay-dependent stability analysis of damping compensated generator-excitation control system

机译:阻尼补偿发电机励磁控制系统的时滞相关稳定性分析

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In this paper, the problem of delay-dependent stability of a damping compensated closed-loop generator-excitation control system is addressed using Lyapunov-Krasovskii func-tional method. In the closed-loop control system, the use of complex sensor/measurement circuits, signal conditioning systems and data transfer through communication links introduces time- delay in the feedback loop. The feedback-loop delays affects the overall performance and stability of the closed-loop system. In this paper, using Lyapunov-Krasovskii functional approach combined with Wirtinger inequality, a less conservative stability criterion (sufficient condition) is presented in linear matrix inequality (LMI) to compute analytically the maximum bound of the time-delay within which the closed-loop generator-excitation control system under consideration remains asymptotically stable in the sense of Lyapunov. In the sequel, using a standard bench mark example, the proposed analysis is validated through extensive simulation studies.
机译:在本文中,使用李雅普诺夫-克拉索夫斯基函数方法解决了阻尼补偿闭环发电机励磁控制系统的时滞相关稳定性问题。在闭环控制系统中,使用复杂的传感器/测量电路,信号调节系统以及通过通信链路进行数据传输会在反馈回路中引入时间延迟。反馈回路延迟会影响闭环系统的整体性能和稳定性。本文将Lyapunov-Krasovskii泛函方法与Wirtinger不等式相结合,在线性矩阵不等式(LMI)中提出了一个较不保守的稳定性准则(充分条件),以分析计算闭环所处时间的最大界限在李雅普诺夫的意义上,正在考虑的发电机励磁控制系统保持渐近稳定。在续篇中,使用标准基准示例,通过大量的仿真研究验证了所提出的分析。

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