Bell System Technical Journal · 1966 · 17 citations · 2 references
Numerical AnalysisComputational ScienceEngineeringApproximate ComputingDifference Equation ApproximationQuantum FeedbackComputer EngineeringError ProbabilityComputer ScienceQuantized FeedbackAlgorithmic DevelopmentApproximation TheorySignal ProcessingFunctional IterationRegenerative Repeater
Recently, Zador <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">1</sup> gave a clever functional iteration procedure for determining the error probability in a binary regenerative repeater with quantized feedback. Unfortunately, quantitative results for the long pulse sequences of interest are difficult to come by due to the prohibitive amount of computer time required to carry out the iterations. We have found a simple approximate procedure that breaks the computational bottle-neck in all cases of practical interest. The crux of our approach is the approximation of the functional iteration by a difference equation. For clarity, we use only a few terms of a Taylor series in establishing the difference equation approximation. More terms can be used to obtain a better approximation if needed.
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