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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Dynamic Image-Based Visual Servo Control Using Centroid and Optic Flow Features
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Dynamic Image-Based Visual Servo Control Using Centroid and Optic Flow Features

机译:利用质心和光流特性的基于动态图像的视觉伺服控制

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摘要

This paper considers the question of designing a fully image-based visual servo control for a class of dynamic systems. The work is motivated by the ongoing development of image-based visual servo control of small aerial robotic vehicles. The kinematics and dynamics of a rigid-body dynamical system (such as a vehicle airframe) maneuvering over a flat target plane with observable features are expressed in terms of an unnormalized spherical centroid and an optic flow measurement. The image-plane dynamics with respect to force input are dependent on the height of the camera above the target plane. This dependence is compensated by introducing virtual height dynamics and adaptive estimation in the proposed control. A fully nonlinear adaptive control design is provided that ensures asymptotic stability of the closed-loop system for all feasible initial conditions. The choice of control gains is based on an analysis of the asymptotic dynamics of the system. Results from a realistic simulation are presented that demonstrate the performance of the closed-loop system. To the author's knowledge, this paper documents the first time that an image-based visual servo control has been proposed for a dynamic system using vision measurement for both position and velocity.
机译:本文考虑了为一类动态系统设计完全基于图像的视觉伺服控制的问题。这项工作是由小型航空机器人车辆基于图像的视觉伺服控制的不断发展所激发的。刚体动力学系统(例如飞机机身)在具有可观察特征的平坦目标平面上机动的运动学和动力学以未归一化的球形质心和光学流量测量表示。相对于力输入的图像平面动力学取决于摄像机在目标平面上方的高度。通过在建议的控件中引入虚拟高度动力学和自适应估计,可以弥补这种依赖性。提供了一种完全非线性的自适应控制设计,可确保在所有可行的初始条件下闭环系统的渐近稳定性。控制增益的选择基于对系统渐近动力学的分析。实际仿真结果表明了闭环系统的性能。据作者所知,本文首次记录了基于图像的视觉伺服控制系统在动态系统中的应用,该系统使用位置和速度的视觉测量。

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