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基于压电陶瓷控制的有源耳罩实现及鲁棒性增强研究
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作者 王克杰 张奇志 周雅莉 《电声技术》 2005年第7期55-59,共5页
采用IMC控制器结构,设计自适应数字滤波器消除耳罩内的噪声。次级声源采用压电陶瓷驱动,可有效减轻耳罩体积和重量。针对对象变化和反馈控制器特点,研究了如何加强系统的鲁棒性。实验及仿真结果表明,加强鲁棒性后算法对较高频率噪声信... 采用IMC控制器结构,设计自适应数字滤波器消除耳罩内的噪声。次级声源采用压电陶瓷驱动,可有效减轻耳罩体积和重量。针对对象变化和反馈控制器特点,研究了如何加强系统的鲁棒性。实验及仿真结果表明,加强鲁棒性后算法对较高频率噪声信号及对象变化较大的情况有一定效果。 展开更多
关键词 有源耳罩 自适应反馈噪声控制 压电陶瓷 鲁棒性
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Automatic Stabilization of an Adaptive Feedback Control for Noise Cancelling In-ear Headphones
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作者 Sven Hoeber Christian Pape Eduard Reithmeier 《Journal of Mechanics Engineering and Automation》 2016年第7期364-372,共9页
Headphones with an integrated active noise cancellation system have been increasingly introduced to the consumer market in recent years. When exposing the human ear to active noise sources in this striking distance, t... Headphones with an integrated active noise cancellation system have been increasingly introduced to the consumer market in recent years. When exposing the human ear to active noise sources in this striking distance, the ensuring of a safe sound pressure level is vital. In feedback systems, this is coupled with the stability of the closed control loop; stable controller design is thus essential. However, changes in the control path during run-time can cause the stable control system to become unstable, resulting in an overdrive of the speakers in the headphones. This paper proposes a method, which enables the real-time analysis of the current system state and if necessary stabilizes the closed loop while maintaining the active noise reduction. This is achieved by estimating and evaluating the open loop behavior with an adaptive filter and subsequently limiting the controller gain in respect to the stability margin. 展开更多
关键词 Active noise cancellation feedback control stability analysis.
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