Near-field acoustic holography fast algorithm based on complex ray wave superposition
A near-field acoustic holography and fast algorithm technology, which is applied to the measurement of ultrasonic/sonic/infrasonic waves, measuring devices, instruments, etc., can solve problems such as inverse problems, low calculation accuracy and efficiency, and failure to obtain surface vibration details of sound sources. , to achieve the effect of improving calculation accuracy and calculation efficiency and expanding the scope of application
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[0023] The following diagram illustrates a fast algorithm based on complex ray-wave superposition near-field acoustic holography of the present invention. The method comprises the following steps: (-) selecting the shape of hologram and virtual equivalent source surface, (2) constructing complex ray using ray wave function (3) Solve the Fourier expansion of the unknown source intensity density function (4) Reconstruct the complex sound pressure and vibration velocity of the sound field.
[0024] When selecting the shape of the holographic and virtual equivalent source surfaces in step (1), in the setting of the holographic surface and the virtual equivalent source surface, the equivalent source distribution method with multiple virtual equivalent spherical or ellipsoidal domains is adopted.
[0025] In step (2), the ray wave function is used to construct the complex ray wave superposition method, specifically the ordinary wave superposition method The spherical wave function ...
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