Search Results - "Debus, W."

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  1. 1

    Decision-directed fractionally spaced equalizer control using time-domain interpolation by Siller, C.A., Debus, W.

    Published in IEEE transactions on communications (01-02-1991)
    “…The authors describe a time-domain Nyquist-rate algorithm that broadens the scope of fractional equalizers to include either least-mean-square control or…”
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    Journal Article Conference Proceeding
  2. 2

    General Method for Calculating the Spectrum of a Zero Substitution Coded Signal by Debus, W.

    Published in IEEE transactions on communications (01-11-1979)
    “…This paper describes a general method for calculating the power spectra of zero substitution coded signals and applies this method to calculate the B3ZS signal…”
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    Journal Article
  3. 3

    Spectral shaping and digital synthesis of an M-ary time series by Siller, C.A., Debus, W., Osborne, T.L.

    Published in IEEE communications magazine (01-02-1989)
    “…The use of pulse shaping to control transmitted spectral density precisely is examined. A digital filter architecture is described that not only mitigates the…”
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    Magazine Article
  4. 4

    A Nyquist-rate adaptation algorithm for fractionally spaced equalizers by Siller, C.A., Debus, W.

    “…Describes a time-domain Nyquist-rate algorithm that broadens the utility of fractional equalizers by permitting least-mean-square or true zero-forcing…”
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    Conference Proceeding
  5. 5

    Application of memory-based digital filtering to high-speed digital radio by Siller, Curtis A., Debus, Walter

    Published in AT&T Technical Journal (01-09-1990)
    “…Memory-based digital filtering is considered in the context of high-speed (greater than 15 Mbaud) radio systems, where it finds application as an accurate and…”
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    Journal Article
  6. 6
  7. 7

    Spectral shaping and digital synthesis of an < e1 > M < /e1 > -ary time series by Siller, C A, Debus, W, Osborne, T L

    Published in IEEE communications magazine (01-02-1989)
    “…The use of pulse shaping to control transmitted spectral density precisely is examined. A digital filter architecture is described that not only mitigates the…”
    Get full text
    Magazine Article