Stochastic Description of Dynamical Traps in Human Control
Abstract
A novel model for dynamical traps in intermittent human control is proposed. It describes probabilistic, step-wise transitions between two modes of a subject's behavior - active and passive phases in controlling an object's dynamics - using an original stochastic differential equation. This equation governs time variations of a special variable, denoted as , between two limit values, and . The introduced trap function, , quantifies the subject's perception of the object's deviation from a desired state, thereby determining the relative priority of the two action modes. Notably, these transitions - referred to as the subject's action points - occur before the trap function reaches its limit values, or . This characteristic enables the application of the proposed model to describe intermittent human control over real objects.
Cite
@article{arxiv.2503.01812,
title = {Stochastic Description of Dynamical Traps in Human Control},
author = {Vasily Lubashevskiy and Ihor Lubashevsky and Namik Gusein-zade},
journal= {arXiv preprint arXiv:2503.01812},
year = {2025}
}
Comments
7 pages, original paper