Title :
Design of high-speed digital filters suitable for multi-DSP implementation
Author :
Kayashi, K. ; Dhar, Kaushal K. ; Sugahara, Kazunori ; Hirano, Kotaro
fDate :
2/1/1986 12:00:00 AM
Abstract :
A multipath signal processing scheme is proposed to overcome the limitation on throughput rate of present-day LSI devices using a number of digital signal processors. Two methods are proposed to realize a given transfer function H(z) for a digital filter with a throughput rate speed that is N times higher than in conventional methods. The first method, the delayed multipath approach, uses an N-path structure as a building element. These N elements are connected successively with increasing delay units to realize a given transfer function. The second method preprocesses the input signal sequence with an FFT processor and follows it up by N of constituent transfer functions derived from H(z) having real coefficients. The output of these N constituent transfer functions is finally post processed by an inverse FFT processor to obtain the desired output signal. The number of the constituent transfer functions is double for a special case when the transfer function to be implemented has complex valued coefficients.
Keywords :
Digital filters; Fast Fourier transforms; Signal processing; Transfer functions; digital filters; fast Fourier transforms; signal processing; transfer functions; Buildings; Data preprocessing; Delay; Digital filters; Digital signal processing; Digital signal processors; Large scale integration; Signal processing; Throughput; Transfer functions;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.1986.1052486