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Titlebook: Discrete-time Signal Processing; An Algebraic Approac Darrell Williamson Textbook 1999 Springer-Verlag London 1999 MATLAB.Software.Symbol.a

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https://doi.org/10.1007/978-1-4471-0541-1MATLAB; Software; Symbol; algebra; algorithms; design; discrete Fourier transform; fast Fourier transform (
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https://doi.org/10.1007/978-981-16-8406-7of generality, we assume . to be a subset of the integers .. Given one digital signal, then another signal can be defined as the solution of a difference equation in which the given signal is the independent (or input) signal. This Chapter is concerned with the solution of linear difference equation
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https://doi.org/10.1007/978-3-030-69325-1where {.(.) = ..;. ≥ 0} which is defined by the two parameters {., .} can also be described as the initial condition response of the first order difference equation {.(. + 1) = .(.); .(0) = .}. More generally, the signal.which is represented by the 2. (possibly) complex parameters {.., ..}for 1 ≤ .
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1439-2232 ns is a body of theory, analysis and techniques which is equally broad. Darrell Williamson has faced the difficult task of organising this material by adopting an algebraic approach. This uses general mathemati978-1-85233-161-0978-1-4471-0541-1Series ISSN 1439-2232 Series E-ISSN 2510-3814
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Textbook 1999concepts and interpretations emerge quite spontaneously and these are then discussed, used, discarded or subsumed into the prevailing subject paradigm. Sometimes these innovative concepts coalesce into a new sub-discipline within the broad subject tapestry ofcontrol and signal processing. This preli
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