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Internal model-based LQG/H/sub /spl infin// design of robust active noise controllers for an acoustic duct system

机译:基于内部模型的LQG / H / sub / spl infin //声学导管系统鲁棒有源噪声控制器的设计

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摘要

In this paper, a method of linear quadratic Gaussian (LQG) control with an H/sub /spl infin// performance bound is modified for a robust active noise control design of an acoustic duct system. This H/sub /spl infin//-constraint LQG (LQG/H/sub /spl infin//) method is incorporated with an internal model principle to design robust internal model-based active noise controllers to attenuate a narrow-band disturbance noise in a duct. Computer simulation results show an enhanced robust control performance of this internal model-based LQG/H/sub /spl infin// design with respect to the variation of the disturbance noise frequency and demonstrate a global control performance along the duct. Experimental results further demonstrate its global performance robustness capability and support the feasibility of the proposed internal model-based LQG/H/sub /spl infin// design method.
机译:在本文中,针对H / sub / spl infin //性能界限的线性二次高斯(LQG)控制方法进行了修改,以实现声导管系统的鲁棒主动噪声控制设计。这种H / sub / spl infin //约束LQG(LQG / H / sub / spl infin //)方法与内部模型原理结合在一起,可以设计基于鲁棒内部模型的有源噪声控制器来衰减窄带干扰噪声在管道中。计算机仿真结果表明,这种基于内部模型的LQG / H / sub / spl infin //设计在干扰噪声频率变化方面具有增强的鲁棒控制性能,并展示了沿风管的整体控制性能。实验结果进一步证明了其全局性能的鲁棒性,并支持所提出的基于内部模型的LQG / H / sub / spl infin //设计方法的可行性。

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