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Cooperative Control of Mobile Sensor Networks: Adaptive Gradient Climbing in a Distributed Environment

IEEE Transactions on Automatic Control · 2004 · Vol. 49(8) · pp. 1292–1302
Petter ÖgrenE. FiorelliNaomi Ehrich Leonard

Abstract

We present a stable control strategy for groups of vehicles to move and reconfigure cooperatively in response to a sensed, distributed environment. Each vehicle in the group serves as a mobile sensor and the vehicle network as a mobile and reconfigurable sensor array. Our control strategy decouples, in part, the cooperative management of the network formation from the network maneuvers. The underlying coordination framework uses virtual bodies and artificial potentials. We focus on gradient climbing missions in which the mobile sensor network seeks out local maxima or minima in the environmental field. The network can adapt its configuration in response to the sensed environment in order to optimize its gradient climb.

Distributed Control Multi-Agent SystemsRobotic Path Planning AlgorithmsModular Robots and Swarm IntelligenceWireless sensor networkMobile robotMaxima and minimaComputer scienceClimbClimbingHill climbingDistributed computingEngineeringComputer network
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References
Methods of Numerical Integration.
Mathematics of Computation · 1986 · 2,807 citations
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