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Construction and application of ocean big data platform based on UAV system

机译:基于无人机系统的海洋大数据平台的建设与应用

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China is a country with vast ocean area, long coastline and abundant marine resources. In recent years, the State Council has put forward a series of strategic plans for building a powerful maritime country, which requires to strengthen the capacity of building the omni-directional stereoscopic ocean monitoring system. On September 12, 2017, the State Oceanic Administration issued the fax about "The notice on carrying out the research on aerospace science and technology serving in marine development". It is worth mentioning that the rapid development of UAV technology has brought new opportunities to the marine application. The UAV system can be used as an important supplement method compared with satellites, ships and helicopters, which could provide a good guarantee for reconnaissance, surveillance, intelligence collection, target positioning and emergency response missions with its high reliability, high efficiency and low cost and low risk. Construction and application of ocean big data platform based on UAV system is a hierarchical architecture including application layer, service layer, access layer and resource layer from top to bottom. Every layer has its responsibility and they cooperate with each other to provide the big data service and application throughout. The platform is obviously superior to others with its diversified, comprehensive, personalized and intelligent characteristics, which can efficiently provide real-time or quasi real-time marine environment data, continuously execute missions in all-weather condition day and night, flexibly approach the accident site and immediately take emergency measures. As what is shown in picture 1, the resource layer provides a wide range of hardware, software and data resources. The access layer provides a comprehensive access means with different kinds of UAV systems, which is the core component of the whole platform.The cruise altitude of CH-AUV, CH-804C, CH-3, CH-4, CH-5 and CH-T4 is respectively 1500m in the sea, 100m~3000m.80m~6400m,200m~7200m,500m~8000m,1000m~25000m, which could fully cover of the space base, air base .land base and sea base. The max endurance of those above isl0h,4h,12h,30h,40h,30days respectively, which makes it possible to execute the missions in all-weather condition. The max pay load capacity ranges from 3kg to 1050kg, so the optical, microwave and laser payloads can be carried at the same time. The service layer is a data center providing big data modeling, retrieval, association, mining and integration service where users can get these diversified services and accurate data easily at any time anywhere. The service layer provides data security for the application layer and the application layer gives feedback to the service layer according to the application requirements. These two layers supplement each other to improve the quality and efficiency of the whole platform. The application layer consists of two parts: the basic application and the integrated application. The basic application meet the basic requirements of marine applications including ocean environmental protection, disaster prevention and mitigation, maritime law enforcement, ocean and islands monitoring and emergency response. The integrated application including environmental forecast, disaster warning and situation analysis shows the high intelligence of the platform, which just describes the real smart ocean system. Above all, construction and application of ocean big data platform based on UAV system can not only provide a variety of data accessing methods, but also provide intelligent services and applications.lt will bring new chapters to intelligent monitoring, dynamic prediction, systematic analysis, emergency response and other marine applications with its capacity of all directions service, all time accessing and all business coverage.
机译:中国是一个海洋面积大,海岸线长,海洋资源丰富的国家。近年来,国务院提出了一系列建设海洋强国的战略计划,要求加强全向立体海洋监测系统的建设。 2017年9月12日,国家海洋局发布了《关于开展海洋科学技术服务于海洋发展的通知》的传真。值得一提的是,无人机技术的飞速发展为船舶应用带来了新的机遇。与卫星,舰船和直升机相比,无人机系统可以作为一种重要的补充方法,以其高可靠性,高效率,低成本和低成本为无人机提供侦察,监视,情报收集,目标定位和应急任务的良好保证。低风险。基于无人机系统的海洋大数据平台的构建与应用是一种从上到下的应用层,服务层,访问层和资源层的层次结构。每一层都有自己的责任,他们相互协作以提供整个大数据服务和应用程序。该平台具有多样化,全面,个性化和智能化的特点,明显优于其他平台,可以高效地提供实时或准实时的海洋环境数据,在全天候的条件下昼夜连续执行任务,灵活地处理事故。现场并立即采取紧急措施。如图1所示,资源层提供了广泛的硬件,软件和数据资源。通道层为整个平台的核心组成部分提供了不同种类的无人机系统的综合通道方式.CH-AUV,CH-804C,CH-3,CH-4,CH-5和CH-A的巡航高度-T4分别在海中1500m,100m〜3000m.80m〜6400m,200m〜7200m,500m〜8000m,1000m〜25000m,可以完全覆盖空基,空基,陆基和海基。超过10l,4h,12h,30h,40h,30天的最大耐力,可以在全天候条件下执行任务。最大有效负载范围为3kg至1050kg,因此可以同时携带光学,微波和激光有效载荷。服务层是一个数据中心,提供大数据建模,检索,关联,挖掘和集成服务,使用户可以随时随地轻松获得这些多样化的服务和准确的数据。服务层为应用程序层提供数据安全性,应用程序层根据应用程序需求向服务层提供反馈。这两层相辅相成,以提高整个平台的质量和效率。应用程序层包括两部分:基本应用程序和集成应用程序。基本应用程序满足海洋应用程序的基本要求,包括海洋环境保护,防灾减灾,海事执法,海洋和岛屿监控以及应急响应。集成的应用程序(包括环境预测,灾难预警和情况分析)显示了该平台的高度智能,该平台仅描述了真正的智能海洋系统。首先,基于无人机系统的海洋大数据平台的建设和应用,不仅可以提供多种数据访问方法,而且可以提供智能服务和应用。具有全方位服务,全天候访问和所有业务覆盖范围的能力,可应对和其他海洋应用。

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