PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
  • Sesja wygasła!
  • Sesja wygasła!
Tytuł artykułu

Exploring Cycle Structures of Additive Cellular Automata

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper reports the complete characterization of additive cellular automaton (ACA) that employs xor and xnor logic to realize its next state function. Compared to linear cellular automaton (LCA) [], which employs only xor logic in its next state function, an ACA displays much more wider varieties of state transition behavior leading to enhanced computing power. An analytical framework is developed to characterize the cyclic vector subspaces of an ACA that can be derived from careful analysis of the vector subspaces covered by the LCA. A scheme is proposed to explore the ACA structures having different state transition behavior than that of its LCA counterpart. The reported theoretical analysis justifies the nature of differences.
Wydawca
Rocznik
Strony
137--154
Opis fizyczny
bibliogr. 22 poz.
Twórcy
autor
autor
Bibliografia
  • [1] S. Chakraborty, D. Roy Chowdhury, and P. Pal Chaudhuri. Theory and Application of Non-Group Cellular Automata for Synthesis of Easily Testable Finite State Machines. IEEE Trans, on Computers, 45(7):769-781, July 1996.
  • [2] S. Chattopadhyay. Some Studies on Theory and Applications of Additive Cellular Automata. PhD thesis, I.I.T. Kharagpur, India, 1996.
  • [3] P. Pal Chaudhuri, D. Roy Chowdhury, S. Nandi, and S. Chatterjee. Additive Cellular Automata - Theory and Applications, volume 1. IEEE Computer Society Press, CA, USA, ISBN 0-8186-7717-1,1997
  • [4] D. Roy Chowdhury. Theory and Applications of Additive Cellular Automata for Reliable and Testable VLSI Circuit Design. PhD thesis, I.I.T. Kharagpur, India, 1992.
  • [5] D. Roy Chowdhury, S. Basu, I. Sen Gupta, and P. Pal Chaudhuri. Design of CAECC - Cellular Automata based Error Correcting Code. IEEE Trans, on Computers, 43(6):759-764, June 1994.
  • [6] A. K. Das. Additive Cellular Automata : Theory and Application as a Built-in Self-test Structure. PhD thesis, I.I.T. Kharagpur, India, 1990.
  • [7] A. K. Das and P. Pal Chaudhuri. Efficient Characterization of Cellular Automata. Proc. IEE (Part E), 137(l):81-87, January 1990.
  • [8] A. K. Das and P. Pal Chaudhuri. Vector Space Theoretic Analysis of Additive Cellular Automata and Its Applications for Pseudo-Exhaustive Test Pattern Generation. IEEE Trans, on Computers, 42(3):340-352, March 1993.
  • [9] P. Dasgupta, S. Chattopadhyay, and I. Sengupta. Theory and application of non-group cellular automata for message authentication. Journal of Systems Architecture, 47(7):383-404, July.
  • [10] K. B . Datta. Matrix and Linear Algebra. BPB Publications, 1993.
  • [11] Niloy Ganguly. Cellular Automata Evolution : Theory and Applications in Pattern Classification. Ph.D Thesis, CST Dept, BESU, India, 2004.
  • [12] O. Martin, A. M. Odlyzko, and S. Wolfram. Algebraic Properties of Cellular Automata. Comm. Math. Phys., 93:219-258,1984.
  • [13] S. Misra. Theory and Application of Additive Cellular Automata for Easily Testable VLSI Circuit Design. PhD thesis, I.I.T. Kharagpur, India, 1992.
  • [14] S. Nandi. Additive Cellular Automata : Theory and Application for Testable Circuit Design and Data Encryption. PhD thesis, I.I.T. Kharagpur, India, 1994.
  • [15] S. Nandi, B. K. Kar, and P. Pal Chaudhuri. Theory and Application of Cellular Automata in Cryptography. IEEE Trans, on Computers, 43(12), December 1994.
  • [16] K. Paul. Theory and Application ofGF(2p) Cellular Automata. PhD thesis, B. E. College , (Deemed University), Howrah, India, 2002.
  • [17] K. Paul, D. Roy Chowdhury, and P Pal Chowdhury. Theory of Extended Linear Machines. IEEE Trans, on Computers, 2002.
  • [18] M. Serra and G. L. Chen. Pseudo-Random Pattern Generation and Fault Coverage of Delay Faults with Non Linear Finite State Machines with High Entropy. In Proc. IEEE On-Line Testing Workshop,Crete, Greece, pages 66-77, 1997.
  • [19] B K Sikdar, N Ganguly, and P Pal Chaudhuri. Design of Test Pattern Generator without Prohibited Pattern Set. IEEE Trans on Computer Aided Design, 23:1650- 1660, Dec 2004.
  • [20] H. Stone. Linear Machines. Princeton University Press, 1965.
  • [21] H. Stone. Discrete Mathematical Structures and Their Applications. Science Research Associates Inc., 1973.
  • [22] S. Wolfram. Statistical Mechanics of Cellular Automata. Rev. Mod. Phys., 55(3):601-644, July 1983.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0018-0033
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.