TY - JOUR
T1 - Complex Chebyshev approximation for infinite impulse response digital filters
AU - Okuda, Masahiro
AU - Ikehara, Masaaki
AU - Takahashi, Shin Ichi
PY - 1996/1
Y1 - 1996/1
N2 - In this paper, a new Chebyshev approximation (amplitude and phase simultaneous approximation) method for IIR digital filters is proposed. The proposed algorithm is based on the Remez algorithm. By solving the eigenvalue problem at each iteration, the frequency characteristic of the filter is interpolated so that the error function in the complex domain is made with equal ripples. Since the previously proposed amplitude and phase simultaneous approximation methods for the IIR digital filters are based on the nonlinear equation, they all require substantial computation. On the other hand, the present method is extremely simple and the amount of computation can be reduced significantly. Nevertheless, the performance equal to or more than the conventional one can be obtained. Further, the present method can be applied not only for the real coefficient filters but also for the complex coefficient filters. It is possible to carry out characteristic approximations limited to the positive frequency range. Hence, a further reduction of the filter order needed for signal processing can be attempted.
AB - In this paper, a new Chebyshev approximation (amplitude and phase simultaneous approximation) method for IIR digital filters is proposed. The proposed algorithm is based on the Remez algorithm. By solving the eigenvalue problem at each iteration, the frequency characteristic of the filter is interpolated so that the error function in the complex domain is made with equal ripples. Since the previously proposed amplitude and phase simultaneous approximation methods for the IIR digital filters are based on the nonlinear equation, they all require substantial computation. On the other hand, the present method is extremely simple and the amount of computation can be reduced significantly. Nevertheless, the performance equal to or more than the conventional one can be obtained. Further, the present method can be applied not only for the real coefficient filters but also for the complex coefficient filters. It is possible to carry out characteristic approximations limited to the positive frequency range. Hence, a further reduction of the filter order needed for signal processing can be attempted.
KW - Complex Chebyshev approximation
KW - Eigenvalue problem
KW - IIR digital filter
KW - Remez algorithm
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U2 - 10.1002/ecjc.4430790102
DO - 10.1002/ecjc.4430790102
M3 - Article
AN - SCOPUS:0029736101
SN - 1042-0967
VL - 79
SP - 12
EP - 21
JO - Electronics and Communications in Japan, Part III: Fundamental Electronic Science (English translation of Denshi Tsushin Gakkai Ronbunshi)
JF - Electronics and Communications in Japan, Part III: Fundamental Electronic Science (English translation of Denshi Tsushin Gakkai Ronbunshi)
IS - 1
ER -