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Application of Hilbert space techniques and Green's function methods to a realistic condenser microphone model

机译:希尔伯特空间技术和格林函数方法在逼真的电容麦克风模型中的应用

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摘要

A realistic model for a condenser microphone is theoretically investigated. The model consists of a rigid cylinder closed on the bottom by a membrane and on the top by a rigid plate. The cylinder is divided into two chambers by an electrode with a number of small holes. This coupled acoustic system is mathematically treated by an operator formalism. Each part of the system (outer space, membrane, electrode, two chambers) corresponds a linear operator in a Hilbert space. The interfaces (membrane, electrode with holes) correspond to state vectors in this Hilbert space. Applying Green's integral formula leads to a system of equations in this space, corresponding conventionally to integral equations with Green's functions as kernels. By approximating the operators of the two chambers by multiples of the identity operator (i.e., conventionally replacing the singular Green's function by multiples of the Dirac delta function) it is possible to solve the problem analytically, taking into account exactly the pattern of the holes in the electrode, thus avoiding an approximation made in the preceding paper. The agreement with experiment is very satisfactory.
机译:理论上研究了电容麦克风的现实模型。该模型由一个刚性圆柱体组成,该圆柱体的底部由膜片封闭,顶部由刚性板封闭。圆柱体通过带有许多小孔的电极分成两个腔室。该耦合声学系统在数学上由操作员形式主义处理。系统的每个部分(外层空间,膜,电极,两个腔室)对应于希尔伯特空间中的线性算子。界面(膜,带孔的电极)对应于此希尔伯特空间中的状态向量。应用格林的积分公式可得出该空间中的方程组,通常对应于具有格林函数作为内核的积分方程。通过以身份运算符的倍数近似两个腔室的运算符(即,通常用狄拉克δ函数的倍数代替奇异的格林函数),可以在分析时解决问题,同时准确考虑到孔中的孔型电极,从而避免了前面论文中的近似。与实验的协议非常令人满意。

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