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Titlebook: Digital Signal Processing; Concepts and Applica Bernard Mulgrew,Peter Grant,John Thompson Textbook 1999Latest edition Bernard Mulgrew, Pete

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https://doi.org/10.1007/978-3-642-67660-4ions and consequent frequency response. It investigates the differences in the passband shape and transition band roll-off rate for these particular prototype filter designs. Digital filter design is then introduced via the difference equation of Chapter 4 and the various filter structures are explo
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Sachverzeichnis für die Bände I–III, VIIAcan be described as ‘weighted sums of complex exponentials’ and are thus highly predictable in the following sense: given the Fourier transform of a signal we can work out exactly what the value of that signal would be at any time .. In practical applications other signals are encountered which are
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Sachverzeichnis für die Bände I–III, VIIA in previous chapters are based firmly on frequency domain concepts. For example, in a particular application it might be known . that the desired signal exists within a narrow bandwidth of . Hz centred at a frequency . Hz and is subjected to additive noise or interference whose power is spread over
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Sacred Humanism without Miracles >128-point, is that the DFT processing becomes extensive and, with limited speed multiply and accumulate hardware, then the bandwidth of the DFT processor is restricted. For a real multiply and accumulate (MAC) rate of 50 MHz and a corresponding cycle time of 20 ns, the sample rate of a 1024-point
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