Title :
Poster abstract: Physical stigmergy for decentralized constrained optimization: An intelligent lighting example
Author :
Pavlic, Theodore P.
Author_Institution :
Sch. of Life Sci., Arizona State Univ. Tempe, Tempe, AZ, USA
Abstract :
Conventional distributed solutions for optimization problems with inseparable constraints require significant coordination between agents. Here, a novel numerical approach is described that achieves coordination via stigmergy - agents communicate indirectly through modifications of the environment. This approach is designed for optimal resource allocation problems where every solution exists on a constraint boundary; these boundaries provide the environmental cues that guide the collective motion of the distributed actuators without formal communication between them. Theoretical and experimental results validate this approach for an intelligent lighting example; despite the lack of direct coordination, Pareto-optimal allocations are stabilized. The general approach of using physical stigmergic memory may be useful in many other cyber-physical systems.
Keywords :
Pareto optimisation; artificial intelligence; lighting; numerical analysis; resource allocation; Pareto-optimal allocation stabilization; agent communication; collective distributed actuator motion; constraint boundary; cyber-physical systems; decentralized constrained optimization; environmental cues; intelligent lighting; numerical approach; optimal resource allocation problems; physical stigmergic memory; Actuators; Educational institutions; Lighting; Optimization; Resource management; Sensors; Water heating; Agents and autonomous systems; Bioinspiration; Distributed decentralized control; Optimization algorithms;
Conference_Titel :
Cyber-Physical Systems (ICCPS), 2013 ACM/IEEE International Conference on
Conference_Location :
Philadelphia, PA