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Interrelations between the coefficients of FIR digital differentiators and other FIR filters and a versatile multifunction configuration.

, , and . Signal Process., 39 (3): 247-262 (1994)

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Design of efficient fir digital differentiators of second and higher degrees by using universal weights., and . I. J. Circuit Theory and Applications, 22 (1): 25-49 (1994)Semi-analytic method for the design of digital FIR filters with specified notch frequency., , and . Signal Process., 59 (2): 235-241 (1997)Interrelations between the coefficients of FIR digital differentiators and other FIR filters and a versatile multifunction configuration., , and . Signal Process., 39 (3): 247-262 (1994)On the design of linear phase, FIR integrators for midband frequencies., , and . IEEE Trans. Signal Process., 44 (10): 2391-2395 (1996)Special FIR and IIR BI Notch Filters., , and . ARTCom, page 657-660. IEEE Computer Society, (2009)Fast computation of the discrete Hartley transform., , and . I. J. Circuit Theory and Applications, 38 (4): 409-417 (2010)Highly narrow rejection bandwidth finite impulse response notch filters for communication., , and . IET Commun., 4 (18): 2208-2216 (2010)Design of efficient second and higher order FIR digital differentiators for low frequencies, , and . Signal Processing, 20 (3): 219--225 (July 1990)A note on the fir approximation of a fractional sample delay., , and . I. J. Circuit Theory and Applications, 21 (3): 265-274 (1993)On the design of efficient second and higher degree FIR digital differentiators at the frequency π/(any integer)., , and . Signal Process., 27 (2): 117-124 (1992)