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Control of Loudspeakers Using Disturbance-Observer-Type Velocity Estimation

机译:使用扰动-观察者类型速度估计的扬声器控制

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摘要

In this paper, a new approach to obtain sensorless velocity feedback for loudspeakers is developed. The back electromotive force (back-EMF) of the moving coil is estimated by using a disturbance-observer-type estimator based on the coil current measurement. The cone velocity of a loudspeaker can be obtained based on its proportionality to the back-EMF. Instead of relying on the coupled mechanical dynamics as reported in previous work, the proposed velocity estimation is based on the precise knowledge of electrical impedance, which makes it more robust to changes in acoustic loading. The proposed approach enables the development of a robust velocity controller for a sub woofer without an expensive velocity measuring device. Experimental results demonstrated that closed-loop velocity control using the proposed scheme of velocity estimation achieved a performance comparable to that obtained by using measured velocity feedback. The proposed approach can be easily adapted to other moving-coil-type linear actuators.
机译:本文提出了一种获取扬声器的无传感器速度反馈的新方法。通过使用基于线圈电流测量值的干扰观测器估算器,估算动圈的反电动势(back-EMF)。可以根据扬声器与反电动势的比例来获得扬声器的锥体速度。提议的速度估计不是基于先前工作中报告的耦合机械动力学,而是基于对电阻抗的精确了解,这使其对声负载的变化更加鲁棒。所提出的方法使得能够开发用于低音炮的坚固的速度控制器,而无需昂贵的速度测量装置。实验结果表明,使用所提出的速度估计方案进行闭环速度控制,其性能可与使用测得的速度反馈获得的性能相当。所提出的方法可以容易地适应于其他运动线圈型线性致动器。

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