Elementary cellular automaton
2016-08-23
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Application background
PATTERN = elementaryCellularAutomata(RULE, NITER), where NITER is a% scalar, returns an NITER x 2*NITER+1 matrix whose entries are all 0 or
% 1. The I'th row of the matrix contains the state of the elementary 1D
% cellular automaton at iteration I-1, counting the initial state as
% iteration 0. The integer RULE specifies the rule to use as set out at
% http://mathworld.wolfram.com/ElementaryCellularAutomaton.html.
Key Technology
% This wraparound allows long, thin patterns to be generated if an
% appropriate rule is chosen. All patterns with a fixed width will be
% periodic, unless some random noise is added.
matlab
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