Transduction on Kadanoff Sand Pile Model Avalanches, Application to Wave Pattern Emergence

被引:0
|
作者
Perrot, Kevin [1 ]
Remila, Eric [1 ]
机构
[1] Univ Lyon 1, LIP UMR CNRS ENS Lyon 5668, F-69364 Lyon 7, France
来源
MATHEMATICAL FOUNDATIONS OF COMPUTER SCIENCE 2011 | 2011年 / 6907卷
关键词
Discrete dynamical system; self-organized criticality; sand pile model; transducer; COMPLEXITY; SANDPILES; ANT;
D O I
暂无
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Sand pile models are dynamical systems describing the evolution from N stacked grains to a stable configuration. It uses local rules to depict grain moves and iterate it until reaching a fixed configuration from which no rule can be applied. The main interest of sand piles relies in their Self Organized Criticality (SOC), the property that a small perturbation - adding some sand grains - on a fixed configuration has uncontrolled consequences on the system, involving an arbitrary number of grain fall. Physicists L. Kadanoff et al inspire KSPM, a model presenting a sharp SOC behavior, extending the well known Sand Pile Model. In KSPM(D), we start from a pile of N stacked grains and apply the rule: D-1 grains can fall from column i onto the D-1 adjacent columns to the right if the difference of height between columns i and i+1 is greater or equal to D. This paper develops a formal background for the study of KSPM fixed points. This background, resumed in a finite state word transducer, is used to provide a plain formula for fixed points of KSPM(3).
引用
收藏
页码:508 / 519
页数:12
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