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R. W. Schäfer and L. R. Rabiner “A digital signal processing approach to interpolation,” Proc. IEEE, vol. 61, pp. 692–720, June 1973.
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R. E. Crochiere and L. R. Rabiner “Optimum FIR digital filter implementation for decimation, interpolation and narrowband filtering,” IEEE Trans. Acoust. Speech, Signal Processing, vol. ASSP-23, pp. 444–456, Oct. 1975.
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R. E. Crochiere, L. R. Rabiner, and R. R. Shively “A novel implementation of digital phase shifters,” Bell Syst. Tech. J., vol. 54, pp. 1497–1502, Oct. 1975.
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R. E. Crochiere and L. R. Rabiner “Further consideration on the design of decimators and interpolators,” IEEE Trans. Acoust. Speech, Signal Processing, vol. ASSP-24, pp. 296–311, 1976.
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On using the symmetry of FIR filters for digital interpolation
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N. Narasimka and A. Peterson, “On using the symmetry of FIR filters for digital interpolation,” IEEE Trans. Acoust. Speech, Signal Processing, vol. ASSP-26, p. 267, June 1978.
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Raytheon Company, The Microprogrammable Beamformer. Portsmouth, RI: Raytheon Company Publication, June 1974.
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A computer program for designing optimum FIR linear phase digital filters
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J. H. McClellan, T. W. Parks, and L. R. Rabiner “A computer program for designing optimum FIR linear phase digital filters,” IEEE Trans. Audio Electroacoust., vol. AU-21, pp. 506–526, Dec. 1973.
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Interactive minimax design of linear-phase nonrecursive digital filters subject to upper and lower function constraints
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June
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H. S. Hersey, D. W. Tufts, and J. T. Lewis “Interactive minimax design of linear-phase nonrecursive digital filters subject to upper and lower function constraints,” IEEE Trans. Audio Electroacoust., vol. AU-20, pp. 171–173, June 1972.
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Some considerations in the design of multiband finite-impulse response digital filters
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Dec.
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L. R. Rabiner, J. F. Kaiser, and R. W. Schäfer “Some considerations in the design of multiband finite-impulse response digital filters,” IEEE Trans. Acoust., Speech, Signal Processing, vol. ASSP-22, no. 6, pp. 462–472, Dec. 1974.
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Ph.D. dissertation, Purdue University, Lafayette, IN
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M. McCallig, “Design of nonrecursive digital filters to meet maximum and minimum frequency response,” Ph.D. dissertation, Purdue University, Lafayette, IN, 1975.
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