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Adaptive fuzzy finite-time fault-tolerant control of nonlinear systems with state constraints and input quantization

机译:具有状态约束和输入量化的非线性系统的自适应模糊有限时间容错控制

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摘要

This article concentrates on an adaptive finite-time fault-tolerant fuzzy tracking control problem for nonstrict feedback nonlinear systems with input quantization and full-state constraints. By utilizing the fuzzy logic systems and less adjustable parameters method, the unknown nonlinear functions are addressed in each step process. In addition, a dynamic surface control technique combined with fuzzy control is introduced to tackle the variable separation problem. The problem for the effect of quantization and unlimited number of actuator faults is tackled by a damping term with smooth function in the intermediate control law. Finite-time stability is achieved by combining barrier Lyapunov functions and backstepping method. The finite-time controller is designed such that all the responses of the systems are semiglobal practical finite-time stable and ensured to remain in the predefined compact sets while tracking error converges to a small neighborhood of the origin in finite time. Finally, simulation examples are utilized to testify the validity of the investigated strategy.
机译:本文专注于具有输入量化和全状态约束的非特动反馈非线性系统的自适应有限时间容错模糊跟踪控制问题。通过利用模糊逻辑系统和可调节的参数方法,在每个步骤过程中解决了未知的非线性函数。此外,引入了一种与模糊控制相结合的动态表面控制技术来解决可变分离问题。通过阻尼术语在中间控制法中具有平稳函数的阻尼术语来解决量化和无限数量的致动器故障的影响。通过组合屏障Lyapunov函数和背击方法来实现有限时间稳定性。设计有限时间控制器,使得系统的所有响应是半球形实际有限时间稳定,并且确保在预定义的紧凑型集中保留在预定义的紧凑型集中,同时跟踪误差在有限时间内收敛到原点的小邻域。最后,利用仿真实施例来证明调查策略的有效性。

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