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Optimization of electrodynamic loudspeaker-design parameters by using a numerical calculation scheme

机译:通过数值计算方案优化电动扬声器设计参数

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Electrodynamic loudspeaker-design parameters are studied by using a recently developed modeling scheme for the numerical simulation of magnetomechanical transducers. This simulation scheme is based on a Finite-Element-Method (FEM) and allows the precise and efficient calculation of the magnetic, mechanical and acoustic fields including their couplings. Therewith, the complex dynamic behavior of moving coil drivers can be studied and, furthermore, an appropriate computer-aided-design including an optimization of critical parameters can be established. In the present paper the validity of the simulation models is, first, verified by comparing computed and measured results. The calculated results show good agreement with the measured data. Further on, two practical applications, the elimination of response dips at intermediate frequencies and the improvement in efficiency for higher frequencies, are presented. [References: 15]
机译:通过使用最近开发的用于磁机械换能器数值模拟的建模方案来研究电动扬声器设计参数。该仿真方案基于有限元方法(FEM),可以精确,有效地计算出磁场,机械场和声场及其耦合。从而,可以研究动圈驱动器的复杂动态行为,此外,可以建立包括关键参数优化的适当计算机辅助设计。在本文中,首先,通过比较计算结果和测量结果来验证仿真模型的有效性。计算结果与实测数据吻合良好。进一步地,提出了两种实际应用,即消除中频处的响应骤降和提高高频处的效率。 [参考:15]

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