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Performance Analysis of Hybrid Optical–Acoustic AUV Swarms for Marine Monitoring

机译:光学声-声AUV混合用于海洋监测的性能分析

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Autonomous Underwater Vehicles (AUVs) are assuming an important role in the monitoring and mapping of marine ecosystems, especially for their ability to explore harsh environments. AUV swarm can collect data operating autonomously for long periods enabling new applications in this field. However, the mission duration is usually limited also by the high power consumption required for acoustic transmissions. A new generation of devices complements the acoustic modem with an optical modem that can provide a communication channel with higher capacity and lower power consumption with respect to the acoustic channel. However, the optical link that uses the visible light is very sensitive to the water turbidity that can strongly limit the link coverage. In this paper, we evaluate the networking performances of the Venus vessel, a real AUV prototype equipped with an acoustical modem and an optical modem. The presented analysis aims to evaluate key system parameters allowing to select the best way to set up network communications according to the surrounding conditions (e.g., quality of water) and to the application requirements. Simulation results account for the case of ports or basins, where the water quality is poor and the use of the optical modem is strongly limited by distance. We evaluate system performance in terms of transmission delay in the network and we also provide a power–capacity trade-off.
机译:自主水下航行器(AUV)在海洋生态系统的监视和制图中扮演着重要角色,尤其是其探索恶劣环境的能力。 AUV群可以长期自动收集数据,从而在该领域中实现新的应用。但是,任务持续时间通常也受到声学传输所需的高功耗的限制。新一代的设备用光学调制解调器对声学调制解调器进行了补充,该光学调制解调器可以为通信通道提供比声学通道更高的容量和更低的功耗。但是,使用可见光的光学链路对水的浊度非常敏感,这会严重限制链路的覆盖范围。在本文中,我们评估了维纳斯船的网络性能,维纳斯船是一个配有声波调制解调器和光调制解调器的真正的AUV原型。提出的分析旨在评估关键系统参数,从而根据周围条件(例如水质)和应用需求选择最佳的方式来建立网络通信。模拟结果说明了港口或盆地的情况,那里的水质较差,并且光学调制解调器的使用受到距离的限制很大。我们根据网络中的传输延迟评估系统性能,并提供功率-容量折衷方案。

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