Minimization of adders in fast FIR digital filters and its application to filter design
Mitsuhiko Yagyu, Akinori Nishihara, Nobuo Fujii · 2002
This paper proposes fast FIR digital filter structures using the minimal number of adders. Filter coefficients are expressed with canonic signed digit (CSD) code and Hartley's technique is used to minimize the number of adders and subtractors. The proposed filters implemented as wired logic are fast because the structure having the shortest critical path is selected. An algorithm is given to obtain such fast structures. In many examples the critical path length of the filter structures obtained using the proposed method is equal to that of the conventional CSD structures. This paper also presents a new design method of FIR filters using MILP. Utilization of common expressions in Hartley's technique widen the CSD coefficient space. Thus the mixed integer linear programming (MILP) may lead to better frequency responses. Superior frequency responses are actually obtained in many simulations.