arXiv · 0901.4037
Lévy-like behavior in deterministic models of intelligent agents exploring heterogeneous environments
Abstract
Many studies on animal and human movement patterns report the existence of scaling laws and power-law distributions. Whereas a number of random walk models have been proposed to explain observations, in many situations individuals actually rely on mental maps to explore strongly heterogeneous environments. In this work we study a model of a deterministic walker, visiting sites randomly distributed on the plane and with varying weight or attractiveness. At each step, the walker minimizes a function that depends on the distance to the next unvisited target (cost) and on the weight of that target (gain). If the target weight distribution is a power-law, $p(k)\sim k^{-β}$, in some range of the exponent $β$, the foraging medium induces movements that are similar to Lévy flights and are characterized by non-trivial exponents. We explore variations of the choice rule in order to test the robustness of the model and argue that the addition of noise has a limited impact on the dynamics in strongly disordered media.
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D. Boyer, O. Miramontes, H. Larralde. 2009-04-01. Lévy-like behavior in deterministic models of intelligent agents exploring heterogeneous environments. https://doi.org/10.1088/1751-8113%2F42%2F43%2F434015
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