论文标题

具有最佳运动轨迹的基于轴承的形成控制

Bearing-Based Formation Control with Optimal Motion Trajectory

论文作者

Wang, Zili, Andersson, Sean B., Tron, Roberto

论文摘要

基于轴承的分布式形成控制很有吸引力,因为它可以使用基于视觉的测量来实现所需的形成。使用轴承测量值的基于梯度的控制器已显示出许多有益的特征,例如全局收敛性,对不同图形拓扑的适用性和任意维度的工作区,以及在选择成本方面的灵活性。但是,实际上,此类控制器通常会从其初始位置到编队的最终位置产生复杂的路径。在本文中,我们提出了一种新的程序,以优化基于梯度的轴承形成控制器以获得较短的路径。我们的方法基于成本函数的参数化以及控制器的扩展。我们以代理轨迹的路径长度的总和为原始平衡和形成控制的全局收敛条件,形成并解决非线性优化问题。我们的仿真表明,可以从少量的训练样本(1至7)中优化参数,以使轨迹平直约16%,以供大量的纯轴承形成。但是,在没有任何范围信息的情况下,编队的尺度尚未固定,并且这种优化可能导致地层大小的不期望的压缩。包括范围测量值避免了此问题,并导致进一步的轨迹拉直66%。

Bearing-based distributed formation control is attractive because it can be implemented using vision-based measurements to achieve a desired formation. Gradient-descent-based controllers using bearing measurements have been shown to have many beneficial characteristics, such as global convergence, applicability to different graph topologies and workspaces of arbitrary dimension, and some flexibility in the choice of the cost. In practice, however, such controllers typically yield convoluted paths from their initial location to the final position in the formation. In this paper we propose a novel procedure to optimize gradient-descent-based bearing-based formation controllers to obtain shorter paths. Our approach is based on the parameterization of the cost function and, by extension, of the controller. We form and solve a nonlinear optimization problem with the sum of path lengths of the agent trajectories as the objective and subject to the original equilibria and global convergence conditions for formation control. Our simulation shows that the parameters can be optimized from a very small number of training samples (1 to 7) to straighten the trajectory by around 16% for a large number of random initial conditions for bearing-only formation. However, in the absence of any range information, the scale of the formation is not fixed and this optimization may lead to an undesired compression of the formation size. Including range measurements avoids this issue and leads to further trajectories straightening by 66%.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源