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An adaptive and robust feedback controller for active control of sound and vibration

机译:自适应鲁棒反馈控制器,用于主动控制声音和振动

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摘要

An adaptive feedback system for the active control of sound and vibration is investigated. The controller combines adaptation for minimum variance of the error, to achieve optimal H2 performance for every disturbance, and H robust stability measures, to account for uncertainties in the plant. An internal model control configuration is used, with a fixed FIR filter for the plant model, and an adaptive FIR filter for the controller. The adaptation is performed using the filtered-x LMS algorithm, which is modified so that it converges to a robust controller. The considerations for using this design in active control are discussed, and implementation results on active noise reducing headphones are presented.
机译:研究了一种用于声音和振动主动控制的自适应反馈系统。该控制器结合了误差最小方差的自适应功能,以针对每种干扰实现最佳的H 2 性能,以及H 鲁棒稳定性测度,以解决工厂中的不确定性。使用内部模型控制配置,带有用于工厂模型的固定FIR滤波器和用于控制器的自适应FIR滤波器。自适应是使用已过滤的x-L LMS算法执行的,已对其进行了修改,使其收敛为鲁棒的控制器。讨论了在主动控制中使用该设计的注意事项,并给出了主动降噪耳机的实现结果。

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