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Bioinspired Underwater Navigation Using Polarization Patterns Within Snell’s Window
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作者 CHENG Hao-yuan YU Shi-min +2 位作者 YU Hao ZHU Jin-chi CHU Jin-kui 《China Ocean Engineering》 SCIE EI CSCD 2023年第4期628-636,共9页
Aiming at the requirement of autonomous navigation capability of the underwater unmanned vehicle(UUV),a novel bionic method for underwater navigation based on polarization pattern within Snell’s window is proposed.In... Aiming at the requirement of autonomous navigation capability of the underwater unmanned vehicle(UUV),a novel bionic method for underwater navigation based on polarization pattern within Snell’s window is proposed.Inspired by creatures,polarization navigation is a satellite-free navigation scheme and has great potential to be used in the water.However,because of the complex underwater environment,whether UUV polarization navigation can be realized is doubtful.To illustrate the feasibility of underwater polarization navigation,we firstly establish the model of under-water polarization patterns to prove the stability and predictability of the underwater polarization pattern within Snell’s window.Then,we carry out static and dynamic experiments of underwater heading determination based on developed polarization information detection equipment.Finally,we obtain underwater polarization patterns and conduct the tracking experiment at different water depths.The experimental results of the underwater polarization patterns are consistent with the simulation,which proves the correctness of the proposed model.At the water depth of 5 m,the average angle and position error of the tracking experiment are 14.3508°and 4.0812 m,respectively.It is illustrated that underwater polarization navigation is realizable and the precision can meet the real-time navigation requirements of UUV.This study promotes the improvement of underwater navigation ability and the development of marine equipment. 展开更多
关键词 underwater navigation polarization pattern heading determination tracking experiment
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水下通信导航试验系统框架设计
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作者 吴富梅 秦显平 曾安敏 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2023年第11期1883-1891,共9页
针对综合定位导航授时体系建设需求,本文提出了水下通信导航试验系统框架设计。介绍了水下通信导航试验系统体系架构,主要包括观测系统、运控系统以及用户系统,以及三者之间的关系;探讨了水下通信导航运控系统的总体设计及其核心——信... 针对综合定位导航授时体系建设需求,本文提出了水下通信导航试验系统框架设计。介绍了水下通信导航试验系统体系架构,主要包括观测系统、运控系统以及用户系统,以及三者之间的关系;探讨了水下通信导航运控系统的总体设计及其核心——信息处理系统的组成;面向未来水下定位导航授时发展需求,以构建“协同、可靠、安全、稳健、优化”的运控系统为目标,给出了运控系统发展中需要攻克的空天地海一体化通信技术、基于云平台的大规模数据处理技术、基于人工智能的复杂系统任务调度技术、基于区块链的数据安全共享技术以及弹性化服务等关键技术。 展开更多
关键词 定位导航授时 水下通信导航试验系统 运控系统 区块链技术 人工智能 弹性化服务 云平台 一体化通信
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