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首页> 外文期刊>International Journal of Advanced Robotic Systems >Multichannel adaptive deployment and reliable communication design for unmanned surface vessel
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Multichannel adaptive deployment and reliable communication design for unmanned surface vessel

机译:无人血管的多通道自适应部署和可靠的通信设计

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For the unmanned surface vessel in performing military missions, the safety and controllability are two basic requirements, which need reachable communication channel and reliable data transmission. This article proposes an adaptive switching model with multichannel resource and the unmanned surface vessel shore-to-sea data intercommunication design method. The scheme adopts various mechanisms such as data space, standardized encapsulation, numbering and verification, and active/passive retransmission, which can ensure reliable data transmission and provide reliable communication information for unmanned surface vessel during autonomous mission. A sea trial is also carried out on the unmanned surface vessel control system based on the design scheme. Data analysis shows that the system can successfully realize communication switching and continuous data transformation, which is consistent with design expectation, and guarantees the continuous monitoring and control of unmanned surface vessel by shore-based control station.
机译:对于执行军事任务的无人面的表面船舶,安全性和可控性是两个基本要求,需要可到达通信通道和可靠的数据传输。本文提出了一种具有多通道资源的自适应切换模型和无人血管岸边数据互通设计方法。该方案采用各种机制,例如数据空间,标准化的封装,编号和验证,以及主动/被动重传,其可以确保可靠的数据传输,并在自主任务期间提供无人血管的可靠通信信息。基于设计方案,还对无人面的表面血管控制系统进行了海洋试验。数据分析表明,该系统可以成功实现通信切换和连续数据转换,这与设计期望一致,并保证了由基于岸的控制站的无人面血管的连续监测和控制。

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