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Space-based detection of AIS signals: Results of a feasibility study into an operational space-based AIS system

机译:基于空间的AIS信号检测:可行性研究的基于空间的AIS系统的结果

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An important system in the field of global maritime surveillance is the Automatic Identification System (AIS), which is responsible for communicating ship- and voyage-related data of surface vessels. In order to improve the performance of the existing land-based AIS system, a consortium led by OHB has been responsible for the development of a full-fledged European space-based AIS system. The main challenge in space-based AIS is the collision of multiple AIS messages in a single slot. Several innovative technologies have been applied to the payload to maximize its detection performance. The constellation has been optimized for high performance, sufficient coverage and low timeliness, resulting in 4 orbital planes consisting of 3 satellites each. Orbital parameters are 550 km altitude at 88° inclination. Assessment of the AIS constellation performance is done by using a dedicated AIS simulator applying either present-day or future traffic models. After definition of the use cases, including so-called of High Traffic Zones, which contain exceptionally dense traffic, the performance per use case has been evaluated. Considering all vessels, the user requirements of 1 hour update interval with 80% detection probability for non-HTZ and 3 hour update interval with 80% detection probability for HTZ, can be met for most use cases. For critical use cases, such as North Atlantic or Mediterranean, these requirements will be met for open sea traffic. Such a situation is representative of space-based AIS complementing the already existing infrastructure of coastal stations.
机译:全球海上监控领域的一个重要系统是自动识别系统(AIS),其负责沟通表面容器的船舶和航行相关数据。为了提高现有陆地AIS系统的性能,由OHB领导的联盟一直负责开发全面的欧洲空间的AIS系统。基于空间的AIS中的主要挑战是单个插槽中多个AIS消息的碰撞。有几种创新技术已应用于有效载荷以最大限度地提高其检测性能。该星座已经针对高性能,充分的覆盖率和低及时性进行了优化,导致4个轨道平面由3个卫星组成。轨道参数在88°倾斜度下是550公里的高度。通过使用专用的AIS模拟器应用当天或未来的流量模型来完成AIS星座绩效的评估。在定义用例后,包括含有异常密集流量的高交通区域所谓的,每次使用情况的性能已经过评估。考虑到所有船只,对于大多数用例,可以满足具有80%的1小时更新间隔的用户需求,具有80%的非HTZ和3小时更新间隔的检测概率。对于关键用例,例如北大西洋或地中海,这些要求将得到开放的海洋交通。这种情况代表了基于空间的AIS,补充了已经存在的沿海站的基础设施。

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