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Null Space Based Formation Control for a UAV Landing on a UGV

机译:基于空的空间的形成控制,用于UGV的UV降落

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This paper proposes a controller to autonomously guide a formation of two mobile robots, a differential drive wheeled ground vehicle and an unmanned aerial vehicle, in tasks of positioning. The controller is designed considering the paradigm of virtual structure, in which the virtual structure is the tridimensional straight line linking the two robots, and adopting the technique of null space, to split the whole control task in two sub-tasks, which are to keep the formation and to move the formation. To do that the formation is described by a set of variables, the formation variables, which are derived from the individual robot positions. To apply the null-space technique, the formation variables are grouped into two sets, one associated to the shape of the virtual structure and the other associated to the position of the virtual structure. The use of the null space technique allows to give higher priority to the sub-task of keeping the formation shape, leaving the sub-task of moving the virtual structure to a new position with a lower priority, thus generating a rigid formation. Although the reverse situation, to give higher priority to the movement of the formation to a new position, generating a flexible formation, is also possible, simulated and experimental results have shown that to give higher priority to keep the shape of the formation is the best solution. The reason is that we are aiming at applications demanding that the position of the aerial robot with respect to the ground one be well known along time, allowing the aerial vehicle to land over the terrestrial one.
机译:本文提出了一种控制器,以自主引导两个移动机器人,差动驱动轮廓地面车辆和无人驾驶飞行器的形成,以定位的任务。考虑虚拟结构的范例设计的控制器,其中虚拟结构是链接两个机器人的三维直线,并采用空隙的技术,以便在两个子任务中分离整个控制任务形成并移动形成。为此,该形成由一组变量,形成变量来描述,该变量源自各个机器人位置。为了应用空空间技术,将形成变量分为两组,与虚拟结构的形状相关联,另一组与虚拟结构的位置相关联。使用空空间技术允许保持形成形状的子任务优先级,使将虚拟结构移动到具有较低优先级的新位置的子任务,从而产生刚性地层。虽然相反的情况,要使地形成的形成更高优先级,但产生柔性地层,也是可能的,模拟和实验结果表明,为了使形成的形状更高,是最好的解决方案。原因是我们旨在要求您要求空中机器人相对于地面的位置沿着时间众所周知的应用,允许空中车辆落在地面上。

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