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首页> 外文期刊>Journal of intelligent material systems and structures >Compensated positive position feedback for active control of piezoelectric structures
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Compensated positive position feedback for active control of piezoelectric structures

机译:补偿正位置反馈,用于压电结构的主动控制

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>This article presents a compensated positive position feedback strategy for active control of flexible structures with piezoelectric actuators. In the proposed compensated positive position feedback method, a negative feedback compensator is involved to remedy the deficiency of traditional positive position feedback and to introduce roll-off characteristic at low frequencies. Thus, compensated positive position feedback controllers can be developed with minimal influences on lower order modes and cause no steady-state error to the controlled system. For demonstration purpose, the design processes and the effectiveness of the compensated positive position feedback method are illustrated by active control of a cable net structure with integrated piezoelectric stacked actuators. The numerical simulations demonstrate that compared to the conventional positive position feedback method, the proposed compensated positive position feedback approach overcomes the fundamental defects of frequency shift and spillover into lower order modes and achieves the goal of step-tracking with zero steady-state error. These comparative results confirm the efficacy and superiority of the proposed compensated positive position feedback methodology in active control of flexible structures.
机译: >本文介绍了补偿正位置反馈策略,用于主动控制带有压电执行器的柔性结构。在所提出的补偿正位置反馈方法中,负反馈补偿器被用来弥补传统正位置反馈的不足并引入低频下垂特性。因此,可以在对低阶模式产生最小影响的情况下开发补偿正位置反馈控制器,并且不会对受控系统造成稳态误差。出于演示目的,通过主动控制带有集成压电叠层执行器的电缆网结构,说明了补偿正位置反馈方法的设计过程和有效性。数值仿真表明,与常规的正位置反馈方法相比,该补偿正位置反馈方法克服了频移和溢出到低阶模态的基本缺陷,并实现了稳态误差为零的步进跟踪。这些比较结果证实了所提出的补偿正位置反馈方法在主动控制柔性结构中的有效性和优越性。

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