Secondary channel offline identification method and system for headphone active noise control
A technology of active noise control and secondary channel, which is applied in earphones to reduce environmental noise, earpieces/earphone accessories, microphones, etc. It can solve problems such as complex identification algorithms and unstable convergence speed, achieve good noise reduction effects, and be easy to use for hardware The effect of realization and simple structure
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Embodiment 1
[0036] The established ANC system secondary channel transfer function model is expressed as The approximate model Sh(z) of the transfer function of the secondary channel function is obtained through actual measurement, specifically:
[0037] Step (1): Collect the amplitude-frequency response and phase-frequency response data of each frequency pulse transmitted through the secondary channel, and store it in a variable The parameters a and b of the initialization transfer function are stored in Set the threshold tol, and assign the initial value of variable l to 1;
[0038] Step (2): Calculate the error between the estimated value and the real value under the initial parameters:
[0039]
[0040] Compute the Jacobian matrix:
[0041]
[0042] Step (3): Calculate the sum of squared errors and Among them, the intermediate variable
[0043] Step (4): According to the Gauss-Newton iteration method, it can be known that the iteration variable is initialized
[0...
Embodiment 2
[0051] to combine figure 1 and figure 2 As shown, the main channel specifically refers to the channel through which the external noise signal passes through the first D / A converter, the first reconstruction filter, and the first power amplifier to output sound waves from the main speaker of the earphone; the specific path of the secondary channel is from the secondary The physical path between the loudspeaker and the error sensor, which physically includes the second D / A converter, the second reconstruction filter, the second power amplifier, the secondary loudspeaker, and the connection between the secondary loudspeaker and the error microphone Physical channels, sound fields, electro-acoustic devices, electronic circuits, etc. Channels can be regarded as scene-dependent time-invariant systems when performing offline modeling of secondary channels. Assuming that the transfer function of the secondary channel S(z) is H(z), the offline identification of the secondary channel...
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