Sound source positioning device
A sound source localization, sound source technology, applied in the direction of localization, measurement devices, instruments, etc., can solve the problems affecting the accuracy of the measurement, the error of the measurement result, and the error of the sound source target positioning accuracy.
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Embodiment 1
[0078] The positioning calculation method in the upper computer system 3 of a sound source localization device is as follows:
[0079] exist Figure 10 In the structure of the regular tetrahedron array shown, the four vertices S of the regular tetrahedron 1 , S 2 , S 3 and S 4 There are four microphones respectively, O is the origin of the Cartesian coordinate system, and is also the center of the bottom surface of the regular tetrahedron. Let Q be the target point, the coordinates are Q(x, y, z), and the distance from the origin of the coordinates to the target point OQ is r meters, the projection of OQ on the XOY plane is OQ', define the angle between OQ' and the X-axis as α, and the angle between OQ and the Z-axis is β;
[0080] Suppose S 1 The distance to the coordinate origin O is a=0.141 meters, then the coordinates of the four microphones are:
[0081] S 1 =(a,0,0), S 2 = ( - ...
Embodiment 2
[0090] Except that the distance r from the designed sound source to the microphone array is 2.07 meters, and the spacing d of each microphone is 23 centimeters, that is Others are the same as embodiment 1, and finally draw the azimuth angle formula of the sound source as:
[0091] α ≈ arctan ( 3 d 42 - d 43 d 42 + d 43 - 2 d 41 ) .
Embodiment 3
[0093] Except that the distance r from the designed sound source to the microphone array is 3 meters, and the spacing d of each microphone is 24 cm, that is Others are the same as embodiment 1, and finally draw the azimuth angle formula of the sound source as:
[0094] α ≈ arctan ( 3 d 42 - d 43 d 42 + d 43 - 2 d 41 ) .
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