High-Speed Interception Multicopter Control by Image-Based Visual Servoing

IF 4.9 2区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS
Kun Yang;Chenggang Bai;Zhikun She;Quan Quan
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Abstract

In recent years, reports of illegal drones threatening public safety have increased. For the invasion of fully autonomous drones, traditional methods, such as radio frequency interference and GPS shielding, may fail. This article proposes a scheme that uses an autonomous multicopter with a strapdown camera to intercept a maneuvering intruder unmanned aerial vehicle (UAV). The interceptor multicopter can autonomously detect and intercept intruders moving at high speed in the air. The strapdown camera avoids the complex mechanical structure of the electro-optical pod, making the interceptor multicopter compact. However, the coupling of the camera and multicopter motion makes interception tasks difficult. To solve this problem, an image-based visual servoing (IBVS) controller is proposed to make the interception fast and accurate. Then, in response to the time delay of sensor imaging and image processing relative to attitude changes in high-speed scenarios, a delayed Kalman filter (DKF) observer is generalized to predict the current image position and increase the update frequency. Finally, hardware-in-the-loop (HITL) simulations and outdoor flight experiments verify that this method has a high interception accuracy and success rate. In the flight experiments, a high-speed interception is achieved with a terminal speed of 20m/s.
通过基于图像的视觉伺服实现高速拦截式多旋翼飞行器控制
近年来,有关非法无人机威胁公共安全的报道有所增加。对于完全自主无人机的入侵,传统的方法,如射频干扰和GPS屏蔽,可能会失败。本文提出了一种利用带捷联摄像头的自主多旋翼无人机拦截机动入侵者无人机的方案。拦截多旋翼机能够自主探测和拦截高速空中移动的入侵者。捷联式摄像机避免了光电吊舱复杂的机械结构,使拦截多旋翼机结构紧凑。然而,相机和多旋翼机运动的耦合使得拦截任务变得困难。为了解决这一问题,提出了一种基于图像的视觉伺服(IBVS)控制器,使拦截速度更快、更准确。然后,针对高速场景下传感器成像和图像处理相对于姿态变化的时间延迟,推广延迟卡尔曼滤波(DKF)观测器来预测当前图像位置并提高更新频率。最后,硬件在环(HITL)仿真和室外飞行实验验证了该方法具有较高的拦截精度和成功率。在飞行实验中,实现了终端速度20m/s的高速拦截。
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来源期刊
IEEE Transactions on Control Systems Technology
IEEE Transactions on Control Systems Technology 工程技术-工程:电子与电气
CiteScore
10.70
自引率
2.10%
发文量
218
审稿时长
6.7 months
期刊介绍: The IEEE Transactions on Control Systems Technology publishes high quality technical papers on technological advances in control engineering. The word technology is from the Greek technologia. The modern meaning is a scientific method to achieve a practical purpose. Control Systems Technology includes all aspects of control engineering needed to implement practical control systems, from analysis and design, through simulation and hardware. A primary purpose of the IEEE Transactions on Control Systems Technology is to have an archival publication which will bridge the gap between theory and practice. Papers are published in the IEEE Transactions on Control System Technology which disclose significant new knowledge, exploratory developments, or practical applications in all aspects of technology needed to implement control systems, from analysis and design through simulation, and hardware.
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