论文标题

一种新型的水产养殖环境监测的自动驾驶机器人系统

A Novel Autonomous Robotics System for Aquaculture Environment Monitoring

论文作者

Zhang, Tianqi, Shen, Tong, Yuan, Kai, Xue, Kaiwen, Qian, Huihuan

论文摘要

实施全自动的无人体表面车辆(USV)监测水质是具有挑战性的,因为有效收集环境数据,同时保持平台稳定和环境友好型。为了解决此问题,我们构建了一个USV,该USV可以自动导航有效的水质参数以监视水生环境。检测装置需要足够稳定,以抵抗敌对的环境或气候,而巨大的体积会干扰水产养殖环境。同时,规划有效的信息收集途径需要应对能源限制与覆盖区域中信息量之间的矛盾。为了应对上述挑战,我们提供了一个USV平台,该平台可以完美地平衡归因于其特殊的圆形结构和冗余运动设计所归因的移动性,稳定性和便携性。为了提供信息计划,我们将TSP和CPP算法组合在一起,以构建一个乐观的计划,以在一定范围内收集更多数据并限制能量限制。我们设计了FISH存在的预测场景,以在模拟实验和现场实验中验证新型系统。新型的水产养殖环境监测系统大大减轻了渔业检查领域的手动操作负担。此外,传感器设置的简单性和平台的最低成本可以使其在水生勘探和商业利用中的其他可能应用。

Implementing fully automatic unmanned surface vehicles (USVs) monitoring water quality is challenging since effectively collecting environmental data while keeping the platform stable and environmental-friendly is hard to approach. To address this problem, we construct a USV that can automatically navigate an efficient path to sample water quality parameters in order to monitor the aquatic environment. The detection device needs to be stable enough to resist a hostile environment or climates while enormous volumes will disturb the aquaculture environment. Meanwhile, planning an efficient path for information collecting needs to deal with the contradiction between the restriction of energy and the amount of information in the coverage region. To tackle with mentioned challenges, we provide a USV platform that can perfectly balance mobility, stability, and portability attributed to its special round-shape structure and redundancy motion design. For informative planning, we combined the TSP and CPP algorithms to construct an optimistic plan for collecting more data within a certain range and limiting energy restrictions.We designed a fish existence prediction scenario to verify the novel system in both simulation experiments and field experiments. The novel aquaculture environment monitoring system significantly reduces the burden of manual operation in the fishery inspection field. Additionally, the simplicity of the sensor setup and the minimal cost of the platform enables its other possible applications in aquatic exploration and commercial utilization.

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