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ADAPTIVE BACK-STEPPING DESIGN OF TCSC ROBUST NONLINEAR CONTROL FOR POWER SYSTEMS

机译:电力系统TCSC鲁棒非线性控制的自适应反步设计

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摘要

The back-stepping design methodology of the nonlinear control theory is known to provide an efficient constructive tool for designing non-linear controllers for a wide range of systems engineering applications where it is crucial to employ non-linear models of the plants. A novel adaptive and robust non-linear control design for electrical power systems employing thyristor controlled series compensation has been solved by using this methodology. For the case of single machine to infinite bus system with TCSC having internal and external disturbances, storage functions of the system are constructed via adaptive back-stepping design and a novel non-linear L_2 gain disturbance attenuation controller along with the parameter update law were derived. Simulation results have demonstrated that the proposed control design possesses asymptotic stability with superior performances. The construction of feedback control law via associated storage functions is consistently systematic, which makes the proposed technique appealing for further investigation in order to derive appropriate design scheme for higher-order non-linear models of power systems.
机译:众所周知,非线性控制理论的反步设计方法论为设计非线性控制器提供了一种有效的构造工具,该非线性控制器适用于必须采用工厂非线性模型的广泛的系统工程应用。通过使用这种方法,已经解决了采用晶闸管控制的串联补偿的电力系统的新型自适应鲁棒非线性控制设计。对于具有内部和外部干扰的TCSC的单机到无限总线系统,通过自适应反步设计构造系统的存储功能,并推导了新型的非线性L_2增益干扰衰减控制器以及参数更新定律。 。仿真结果表明,所提出的控制设计具有渐近稳定性和优越的性能。通过关联的存储函数构造反馈控制律的过程是一致的,这使得所提出的技术吸引了进一步的研究,以便为电力系统的高阶非线性模型得出适当的设计方案。

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