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LMI approach to reliable guaranteed cost control with multiple criteria constraints: The actuator faults case

机译:LMI方法可在多个标准约束下实现可靠​​的保证成本控制:执行器故障情况

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摘要

Based on the multi-objective optimization strategy and linear matrix inequality approach, the problem of reliable guaranteed cost control with multiple criteria constraints is investigated for a class of uncertain discrete-time systems subject to actuator faults. A fault model in actuators, which considers outage or partial degradation in independent actuators, is adopted. The quadratic stability is proved to be independent of the disturbance and the upper bound of a quadratic cost index is improved. The reliable feedback controller is designed to minimize the upper bound of the quadratic cost index, place all the closed-loop poles in a specified disk, constrain the H-infinity norm level of the disturbance attenuation into a given range and guarantee the magnitudes of control inputs less than the given bound, as well. Thus, the resulting closed-loop system can provide satisfactory stability, transient behavior, disturbance rejection level and optimized upper bound of the quadratic cost performance despite possible actuator faults.
机译:基于多目标优化策略和线性矩阵不等式方法,针对一类执行器故障的不确定离散系统,研究了具有多准则约束的可靠保证成本控制问题。执行器中的故障模型考虑了独立执行器的故障或部分退化。证明了二次稳定性与扰动无关,并且提高了二次成本指标的上限。可靠的反馈控制器旨在最大程度地降低二次成本指标的上限,将所有闭环极点放置在指定的磁盘中,将干扰衰减的H-无穷范数限制在给定范围内,并确保控制幅度输入也小于给定范围。因此,尽管可能存在致动器故障,所得的闭环系统仍可提供令人满意的稳定性,瞬态行为,干扰抑制水平和二次成本性能的优化上限。

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