Dept. of Electr. Eng., National Taiwan Univ.JIUN-HAW LEEKu, S.-Y.S.-Y.Ku2007-04-192018-07-062007-04-192018-07-061996-12N/Ahttps://www.scopus.com/inward/record.uri?eid=2-s2.0-0030419103&doi=10.1049%2fip-vis%3a19960905&partnerID=40&md5=0c7bb4c45677b9446e47f820e178221aThe authors deal with the problem of minimax recursive digital filter design with a lattice structure for the denominator. The design problem is formulated so that the coefficients for the numerator and denominator of a recursive filter can be found by solving the best linear complex Chebyshev approximation (LCCA). A design technique based on the weighted leastsquares algorithm previously proposed by one of the authors is then developed for solving the resulting LCCA problem. During the design process, this technique finds the tap coefficients for the numerator and the reflection coefficients for the denominator simultaneously. The stability of the designed recursive filter is ensured by incorporating an efficient stabilisation procedure to make all of the reflection coefficient values fall between -1 and +1. Computer simulations show that the proposed technique provides better design results than existing techniques. © lEE, 1996.application/pdf597573 bytesapplication/pdfen-USRecursive digital filters[SDGs]SDG4Minimax design of recursive digital filters with a lattice denominatorjournal article10.1049/ip-vis:199609052-s2.0-0030419103http://ntur.lib.ntu.edu.tw/bitstream/246246/2007041910032493/1/00556696.pdf