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Numerical and experimental analysis of harmonic distortion in a moving-coil loudspeaker

机译:动圈式扬声器谐波失真的数值和实验分析

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The nonlinear effect of a moving-coil loudspeaker, originating from its magnetic coupling factor and the system's stiffness, presents a significant impact on the sound quality. For improving the sound quality, this article proposes an approach to reduce the total harmonic distortion (THD) by adjusting the initial position of its voice-coil. First, a mathematical model involving the nonlinearities of force factor, mechanical stiffness, and inductance of voice coil is constructed and then solved using a novel algorithm called the parameter spline difference method (PSD). In the course of pursuing reduction of the corresponding THD of a typical moving-coil loudspeaker, the model was used to analyze the nonlinearity of the THD, revealing itself as a nonlinear function of force factor, the system's stiffness and inductance of voice coil. For various initial positions of the voice-coil, the coupled nonlinear differential equations were solved using the PSD to yield corresponding sound pressure level and THD. To our satisfaction, the loudspeaker driver with its voice-coil optimally tuned for the initial position turns out to have a THD reduction of 10%, which is also consistent with our experimental observations.
机译:动圈式扬声器的非线性效应源于其磁耦合系数和系统的刚度,对音质产生重大影响。为了提高声音质量,本文提出了一种通过调整音圈的初始位置来降低总谐波失真(THD)的方法。首先,建立一个涉及力因子,机械刚度和音圈电感非线性的数学模型,然后使用一种称为参数样条差法(PSD)的新颖算法进行求解。在追求降低典型动圈式扬声器的相应总谐波失真的过程中,该模型用于分析总谐波失真的非线性,从而将其显示为力因数,系统刚度和音圈电感的非线性函数。对于音圈的各种初始位置,使用PSD求解耦合的非线性微分方程,以产生相应的声压级和THD。令我们满意的是,针对初始位置进行了优化调整的音圈的扬声器驱动器的总谐波失真降低了10%,这也与我们的实验观察结果一致。

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