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Adaptive Integral Sliding Mode Control Method for Synchronization of Supply Chain System

机译:供应链系统同步的自适应积分滑模控制方法

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摘要

In this paper, synchronization problem of supply chain chaotic system is carried out with active and adaptive integral sliding mode controlling method. Active integral sliding mode synchronization is performed for two identical supply chain systems by assuming that all parameters of the systems are known. When the internal and external distortion parameters of the system are considered unknown, an appropriate feedback controller is developed based on the adaptive integral sliding mode control mechanism to synchronize two identical supply chain chaotic systems and to estimate the unknown parameters of the system. The stability evaluation of the synchronization methods are performed by the Lyapunov stability theorem. In addition, the performance evaluation of the designed controllers and the theoretical analysis are verified by some illustrative numerical simulations. Simulation results indicate excellent convergence from both speed and accuracy points of view.
机译:本文用主动和自适应积分滑动模式控制方法进行了供应链混沌系统的同步问题。 通过假设系统的所有参数是已知的,对于两个相同的供应链系统执行有源积分滑模同步。 当系统的内部和外部失真参数被认为是未知的时,基于自适应整体滑动模式控制机制开发了适当的反馈控制器,以使两个相同的供应链混沌系统同步并估计系统的未知参数。 同步方法的稳定性评估由Lyapunov稳定性定理执行。 此外,通过一些说明性数值模拟验证了设计控制器的性能评估和理论分析。 仿真结果表明了速度和精度观点的优异收敛性。

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