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Potential field based navigation for planetary rovers using internal states

机译:基于内部状态的行星漫游器基于势场的导航

摘要

The work in this paper aims to introduce analysis and applications for the internal state model which is a new model for a swarm of rovers interacting via pair-wise attractive and repulsive potentials. The internal state model updates the state of the art in overcoming the local minima problem through solving the problem with comparatively lower computation cost than other methods. The simulations results show that using the internal state model, a swarm of planetary rovers, rather than moving in a static potential field, are able to manipulate the potential according to their estimation of whether they are moving towards or away from the goal, which allows them to escape from and maneuver around a local minimum in the potential field to reach a goal. An application of a swarm of rovers to solve the problem for different shaped obstacles is introduced to show the efficiency of the model. The model proves stable convergence to a goal and provides similarities with the behaviour of real groups of animals.
机译:本文的工作旨在介绍内部状态模型的分析和应用,内部状态模型是一组成对的车流通过成对吸引和排斥势相互作用的新模型。内部状态模型通过以比其他方法低的计算成本解决问题,从而克服了局部极小问题,从而更新了最新技术。仿真结果表明,使用内部状态模型,一群行星漫游者而不是在静态势场中移动,而是能够根据对它们是朝着目标还是远离目标的估计来操纵势。他们从潜在领域的局部最小值中逃脱并回旋以达到目标。介绍了一组流动车解决不同形状障碍物问题的应用,以证明该模型的有效性。该模型证明了稳定地收敛到一个目标,并提供了与真实动物群行为的相似之处。

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