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Optimal Spraying Control of a Diffusion Process Using Mobile Actuator Networks with Fractional Potential Field Based Dynamic Obstacle Avoidance

YangQuan Chen, Zhongmin Wang, Kevin L. Moore

发表年份
2006
引用次数
21

摘要

The path planning problem for a group of networked mobile robots which can release neutralizing chemicals, known as "mobile actuator networks", is considered. With a group of static networked mesh sensors network, the "mobile actuator networks" aim to neutralize a toxic 2D diffusion process modelled as a distributed parameter system (DPS) governed by a partial differential equation (PDE) of parabolic type. The problem of optimally planning motion trajectories of the mobile actuators (robots) is solved by Centroidal Voronoi Tessellations (CVT). In addition, the fractional potential field method is used for the mobile robots to avoid dynamic obstacles in its working space. Simulation results show the effectiveness of our proposed method.

关键词

Mobile robotMotion planningActuatorObstacle avoidanceVoronoi diagramComputer scienceControl theory (sociology)ObstacleRobotPotential field

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