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首页> 外文期刊>Transactions of the Institute of Measurement and Control >Discrete sliding mode control for hybrid synchronization of continuous Lorenz systems with matched/unmatched disturbances
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Discrete sliding mode control for hybrid synchronization of continuous Lorenz systems with matched/unmatched disturbances

机译:连续洛伦兹系统与匹配/无与伦比干扰的连续洛伦兹系统的离散滑模控制

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摘要

This paper is concerned with the hybrid synchronization of master-slave Lorenz systems with uncertainties. A new systematic design procedure to synchronize continuous master-slave Lorenz chaotic systems is proposed by using a discrete sliding mode control (DSMC). In contrast to the previous works, the design of DSMC can be simplified and only a single controller is needed to realize chaos synchronization. The proposed DSMC ensures the occurrence of the sliding mode. When the controlled system is in the sliding manifold, the effect of disturbances including matched and unmatched cases are discussed. The proposed results conclude the synchronization error of controlled master-slave systems with matched disturbances can be fully derived to zero or robustly suppressed in an estimated bound even with unmatched disturbances, which is not addressed in the literature. The numerical simulation results demonstrate the success and effectiveness of the proposed DSMC developed in this paper.
机译:本文涉及具有不确定性的主奴索洛伦兹系统的混合同步。 通过使用离散的滑模控制(DSMC)提出了一种用于同步连续主从洛伦盾混沌系统的新系统设计过程。 与以前的作品相比,可以简化DSMC的设计,并且仅需要单个控制器来实现混沌同步。 所提出的DSMC确保了滑动模式的发生。 当受控系统处于滑动歧管时,讨论了扰动包括匹配和无与伦比的情况的效果。 所提出的结果总结了具有匹配干扰的受控主从系统的同步误差可以完全导出到估计结束的零或鲁棒地抑制,即使在估计的绑定中也是不匹配的干扰,这在文献中未解决。 数值模拟结果展示了本文开发的拟议DSMC的成功和有效性。

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