Rapid design method of DFT modulated filter bank
A filter bank and design method technology, applied in impedance networks, digital technology networks, electrical components, etc., can solve the problems of inability to quickly design large-scale, large filter bank distortion, and high computational complexity, and achieve accurate reconstruction. Simple and efficient , the effect of reducing complexity and reducing computational cost
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example 1
[0096] Consider designing a 16-channel DFT modulation filter bank, its parameters are set to M=16, K=8, D=64, the length of the analysis and synthesis prototype filter is L h =L g = 65. In the design method provided by the present invention, the parameters are set to α=10 and β=0.2, δ=10 -5 In the design, the algorithm provided by the present invention only performed 5 iterations, which took 0.0078s in total, and only 0.0016s for a single iteration. However, under the same operating environment, the existing algorithm performed 5 iterations. At 0.016s, it takes 0.0032s for a single iteration. Figure 3(a) with 3(b) The amplitude response of the analysis and synthesis prototype filter obtained by the design of the present invention are respectively drawn, Figure 4 The performance indicators of the filter bank are listed, where ε t Represents the transfer function distortion, ε a Represents aliasing distortion. The stopband level SL refers to the maximum value of the normalized a...
example 2
[0098] Consider designing a large-scale DFT modulation filter bank. The parameters of the filter bank are: M=1024, K=512, D=4199, the length of the analysis and synthesis prototype filter is L h =L g = 6144. In the design, the parameters are α=10 and β=0.02δ=10 -5 . The algorithm designed by the present invention performed a total of 20 iterations, a total of 28.28s, and a single-step iteration only required 1.4s. Under the same operating environment, the existing algorithm was iterated 20 times, and a total of 2138.91s was used. One iteration requires 106.95s. The amplitude response of the analytical prototype filter obtained by the present invention is shown in Figure 5(a), and the amplitude response of the integrated prototype filter is shown in Figure 5(b). Image 6 The performance index of the filter bank is given. Experiments show that the algorithm provided by the present invention can quickly design a DFT modulation filter bank, and is suitable for the design of a fil...
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