电力系统三参数四阶混沌模型的改进滑模控制

Ami D. Patel, J. P. Singh
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引用次数: 0

摘要

针对电力系统的三参数四阶混沌模型,设计了一种改进的SMC。建议的方法使用Lyapunov候选函数,该函数包括不连续的sgn函数和基于开关面分数功率的绝对函数,使用较少的控制输入。在使用PI开关面后,设计了滑模控制器。可以观察到,与已有报道的工作[1]相比,采用基于三种控制输入的开关面分数阶功率控制器在较低的ITAE、不显著的稳态误差、有限的总输入变化和较低的控制能量方面表现更好。仿真结果验证了该假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Modified Sliding Mode Control for a Three-Parameter Fourth-Order Chaotic Model of a Power System
This paper shows the design of a modified SMC for a three-parameter fourth-order chaotic model of a power system. The suggested approach uses Lyapunov candidate function that includes discontinuous signum function and absolute function based on fractional power of the switching surface using lower number of control inputs. After the PI switching surface has been used, a sliding mode controller is designed. It is observed that employing fractional power of the switching surface with three control input-based controller performs better in terms of lower ITAE, insignificant steady-state error, limited total variation in input, and low control energy compared to a reported work [1]. The simulation results validate the hypothesis.
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