解决水面船追踪水下机器人时缆绳缠绕与拉紧问题
Tether-Aware Dynamic Collision Avoidance for USV-HROV Systems

- 构建平面安全域,隐式表征缆绳与障碍物碰撞风险
- 设计抗拉紧速度障碍法,减少避障时缆绳绷紧概率
- 结合视线导引实现跟踪与避障协同,适合海洋巡检任务
由无人水面艇(USV)与混合遥控潜水器(HROV)组成的异构海下机器人系统在海底电缆巡检中展现出巨大潜力。在此类任务中,USV 在水面追踪 HROV,通过脐带缆提供电力和通信。然而,动态避障面临挑战:潜航缆绳可能刮擦其他船只,而规避动作又会增大 USV 与 HROV 间距,提高缆绳绷紧风险,影响 HROV 操作。为此,本文提出一种缆绳感知的动态避障方法。首先,引入一种缆绳安全感知的平面区域,无需显式建模缆绳形状即可表示三维碰撞风险;其次,开发一种缆绳绷紧感知的速度障碍方法,实现在避障同时降低缆绳绷紧可能性;最后,将该方法与视线导引集成,协调 HROV 跟踪与避障。基于 Gazebo 的仿真结果表明,所提方法可在避开动态障碍物的同时保持缆绳安全,并在 USV 规避动作中减少缆绳绷紧概率。
原文摘要 · Abstract (English)
Heterogeneous marine robotic systems composed of an unmanned surface vehicle (USV) and a hybrid remotely operated vehicle (HROV) have shown great potential for subsea cable inspection. In such missions, the USV tracks the HROV at the surface while supplying power and communication through an umbilical tether. However, dynamic collision avoidance for the USV during HROV tracking is challenging because the submerged tether may scrape against passing vessels, while evasive maneuvers can enlarge the USV--HROV separation, thereby increasing the likelihood of tether tautness and compromising HROV operations. To address these challenges, this work proposes a tether-aware dynamic collision avoidance method for a USV tracking an HROV. First, a tether safety-aware planar domain is introduced to represent the three-dimensional collision risk between the tether and obstacle vessels without an explicit tether shape model. Second, a tether tautness-aware velocity obstacle method is developed to achieve safe avoidance while reducing the likelihood of tether tautness. Finally, the method is integrated with line-of-sight guidance to coordinate HROV tracking and collision avoidance. Gazebo-based simulations show that the proposed method avoids dynamic obstacle vessels while maintaining tether safety and reducing the likelihood of tether tautness during USV evasive maneuvers.
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