Binary Periodic Signals & Flows, 9781634844529
Hardcover

Binary Periodic Signals & Flows

$467.72

  • Hardcover

    224 pages

  • Release Date

    1 June 2016

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Summary

The signals from digital electrical engineering are modeled by discrete time and real time functions, whose values are binary n-tuples and which are also called signals. The asynchronous circuits, representing the devices that work with such signals, are modeled by Boolean autonomous deterministic regular asynchronous systems, shortly by asynchronous flows. The attribute Boolean’ vaguely refers to the binary Boole algebra; autonomous’ means that there is no input; deterministic’ means the exi…

Book Details

ISBN-13:9781634844529
ISBN-10:1634844521
Series:Mathematics Research Developments
Author:Serban E. Vlad
Publisher:Nova Science Publishers Inc
Imprint:Nova Science Publishers Inc
Format:Hardcover
Number of Pages:224
Release Date:1 June 2016
Weight:620g
Dimensions:260mm x 180mm
About The Author

Serban E. Vlad

Serban E Vlad was born in 1959 in Oradea, Romania and he works at present as analyst-programmer. He is a member of ROMAI and GAMM, the Romanian and the German societies of industrial and applied mathematics. He is the author of more than fifty papers and a chapter in a book. His research monograph Asynchronous Systems Theory was published in several editions. His main fields of interest are binary valued analysis and asynchronous systems theory. In binary valued analysis, he defined for the real argument, binary functions the notions of integral and derivative. He studied also the periodicity of the real argument and discrete argument binary functions. In systems theory, he was concerned with modeling the asynchronous circuits from electronics. He defined the concept of delay and he wrote differential equations that model the ideal latches and other circuits. He introduced the regular asynchronous systems that, by some analogy with the (real, usual) dynamical systems, are generated by Boolean functions which iterate their coordinates independently on each other.

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