高级检索

面向未知岛礁海域的多无人艇协同搜索与响应机制

Multi-USV Collaborative Search and Response Mechanism for Uncharted Island and Reef Waters

  • 摘要: 为提升未知岛礁环境下的无人艇搜索效率与任务协同性,设计了一种基于状态驱动的多无人艇协同搜索与响应方法。在搜索阶段构建可动态更新的子区域集合,结合欧氏距离分配算法实现自适应路径规划。在任务执行中引入驻留判定与降级调度策略,并融合斥力场模型实现避障与路径控制的统一。在响应阶段通过目标运动预测、等角度围捕点分配与半径收缩机制完成多艇协同动态围捕。基于 MATLAB 平台搭建包含 7 个不规则岛礁的二维仿真海域,采用 8 艘无人艇开展验证实验。仿真结果表明,该方法的全局搜索覆盖率达93%,目标发现后多艇协同围捕的平均响应时间为13 s,围捕成功率与避障率均为100%,在搜索覆盖效果、响应稳定性与复杂环境适应性方面表现优异,为海洋巡逻等实际场景的多无人艇协同作业提供了有效方案。

     

    Abstract: To improve the search efficiency and task coordination of unmanned surface vehicles (USVs) in unknown reef environments, a state-driven cooperative search and response method for multiple USVs is designed in this paper. In the search phase, a dynamically updatable sub-region set is constructed, and adaptive path planning is realized by combining with the Euclidean distance allocation algorithm. In the task execution phase, a dwell-time judgment and degraded scheduling strategy are introduced, and the unification of obstacle avoidance and path control is achieved by integrating the repulsive field model. In the response phase, multi-USV cooperative dynamic encirclement is completed through the target motion prediction, equal-angle encirclement point allocation and radius shrinking mechanism. A 2D simulated sea area with 7 irregular reefs is built on the MATLAB platform, and verification experiments are conducted with 8 USVs. The simulation results show that the proposed method achieves a global search coverage rate of 93%, the average response time of multi-USV cooperative encirclement is 13 seconds after target detection, and both the encirclement success rate and obstacle avoidance rate reach 100%. It demonstrates excellent performance in search coverage effect, response stability and adaptability to complex environments, and provides an effective solution for the cooperative operation of multiple USVs in practical scenarios such as marine patrol.

     

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