DocumentCode
1293434
Title
Pseudorandom number generators for VLSI systems based on linear cellular automata
Author
Tsalides, Ph. ; York, T.A. ; Thanailakis, A.
Author_Institution
Sch. of Eng., Democritus Univ. of Thrace, Xanthi, Greece
Volume
138
Issue
4
fYear
1991
fDate
7/1/1991 12:00:00 AM
Firstpage
241
Lastpage
249
Abstract
The use of a simple hybrid cellular automaton (combining rules 90 and 150 in Wolfram´s notation) as a built-in self test (BIST) structure for VLSI systems is considered. Two six-bit pseudorandom number generators based on cellular automata (CA) and LFSR have been designed using 2 mu m design rules for an N-well CMOS process. Layout has been achieved using ChipWise. Comparative performance studies of these CA-based new pseudorandom number generators and the LFSR-based generators show the great advantage of these CA-based BIST structures over the LFSR. The group and semigroup algebraic properties of 1-D bounded elementary cellular automata with the linear evolution rules 90 and 150 are also presented and discussed, together with their state transition graphs. The variety of symmetries of these CA systems results in a multiplicity of functional dependences for the group and semigroup orders of the associated algebraic structures and the CA length N.
Keywords
CMOS integrated circuits; VLSI; built-in self test; finite automata; monolithic integrated circuits; random number generation; 1-D null bounded elementary cellular automata; ChipWise; LFSR; N-well CMOS process; VLSI systems; algebraic properties; built-in self test; design rules; functional dependences; linear cellular automata; performance studies; pseudorandom number generators; state transition graphs;
fLanguage
English
Journal_Title
Computers and Digital Techniques, IEE Proceedings E
Publisher
iet
ISSN
0143-7062
Type
jour
Filename
81902
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