低成本水下多机平台,靠单目相机实现精准分布式定位
Aucamp: An Underwater Camera-Based Multi-Robot Platform with Low-Cost, Distributed, and Robust Localization
- 用单目相机和清晰度特征测距,结合成像模型定位目标
- 分布式协议提升定位精度与覆盖范围,定位误差低于15cm
- 动态模型驱动鲁棒姿态控制,可快速恢复平衡状态
本文提出一种名为Aucamp的水下多机器人平台,具有低成本、分布式感知与鲁棒定位能力。利用图像清晰度特征测量距离,构建单目成像模型,估计目标位置。通过设计分布式更新协议实现全局定位,使感知范围更广,显著提升定位精度与鲁棒性。基于机器人显式动力学模型,提出鲁棒姿态控制框架,确保各机器人保持稳定姿态,增强定位系统可靠性。平台可在受扰后迅速恢复水平平衡。通过大量实验与应用场景验证性能,该平台为水下传感器网络的海洋勘探提供有力支持。
原文摘要 · Abstract (English)
This paper introduces an underwater multi-robot platform, named Aucamp, characterized by cost-effective monocular-camera-based sensing, distributed protocol and robust orientation control for localization. We utilize the clarity feature to measure the distance, present the monocular imaging model, and estimate the position of the target object. We achieve global positioning in our platform by designing a distributed update protocol. The distributed algorithm enables the perception process to simultaneously cover a broader range, and greatly improves the accuracy and robustness of the positioning. Moreover, the explicit dynamics model of the robot in our platform is obtained, based on which, we propose a robust orientation control framework. The control system ensures that the platform maintains a balanced posture for each robot, thereby ensuring the stability of the localization system. The platform can swiftly recover from an forced unstable state to a stable horizontal posture. Additionally, we conduct extensive experiments and application scenarios to evaluate the performance of our platform. The proposed new platform may provide support for extensive marine exploration by underwater sensor networks.
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