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Application of Static and Dynamic Magnetic Finite Element Analysis to the Design and Optimization of Moving Coil Transducer Motors

机译:静电和动态磁性有限元分析在移动线圈换能器电动机的设计和优化中的应用

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摘要

Transducer motors are potential source of nonlinear distortion. There are several nonlinear mechanisms that generate nonlinear distortion in motors. Typical loudspeaker nonlinear models include the dependence of the Bl-product and the voice coil inductance L_(vc) on the voice coil position and current. These effects cause nonlinearity in the driving force, electrodynamic damping, and generate nonlinear flux modulation and reluctance force. In reality, the voice coil inductance and resistive losses depend also on frequency. To take these effects into account the so-called LR-2 impedance model is used. The L_2 and R_2 elements are nonlinear functions of the voice coil position and current. In this work detailed analysis of a nonlinear model incorporating these elements is performed. The developed approach is illustrated by the FEA-based design and optimization of a new JBL ultra-linear transducer to be used in a new line array system.
机译:换能器电机是非线性变形的潜在来源。存在多种非线性机制,可在电机中产生非线性变形。典型的扬声器非线性型号包括BL-产品和音圈电感L_(VC)对音圈位置和电流的依赖性。这些效果导致驱动力,电动阻尼和产生非线性磁通调制和磁阻力的非线性。实际上,音圈电感和电阻损耗也取决于频率。要考虑这些效果,所以使用所谓的LR-2阻抗模型。 L_2和R_2元件是音圈位置和电流的非线性功能。在该工作中,执行包含这些元件的非线性模型的详细分析。通过基于FEA的设计和优化的新型线阵系统中使用的基于FEA的设计和优化来说明所开发的方法。

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