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Communication Concepts for Self-Organizing Distributed Small Satellite Systems

Communication Concepts for Self-Organizing Distributed Small Satellite Systems
自组织分布式小型卫星系统的通信概念
批准号:
329050216
负责人:
Professor Dr. Björn Scheuermann
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2016
资助国家:
德国
项目状态:
已结题
起止时间:
2015-12-31 至 2021-12-31

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中文摘要
翻译
空间飞行正面临着一种模式的转变:小型合作卫星群越来越被认为是传统单一卫星系统的一种有希望的替代方案。这允许更灵活的任务和新的应用场景,同时降低成本和提高弹性,但与此同时,与该领域最先进的通信和协调机制相比,需要新的和更复杂的通信和协调机制。拟议的项目将为今后的合作小卫星系统的通信机制奠定基础。目标是建立一个鲁棒的整体系统,有效地利用通信带宽和能量,并能处理和补偿(部分)故障。例如,必须在卫星之间交换状态和位置信息,以节能的方式将传感器数据传送到地面,并向卫星网络可靠地传送命令。该项目以地球观测领域的两个具体场景为起点,重点研究这些系统中的通信协议设计问题。第一种方案考虑地球观测卫星的编队,即一组卫星保持相对较近的距离并协同调整其方向。它们一起进行光学或磁测量,并利用它们的位置偏移在多个位置或从不同角度同时测量。第二种方案是基于卫星星座,即空间上相距很远的轨道上的卫星,它们在广阔的区域内跟踪应答器(例如火车、轮船或飞机上的应答器)的当前位置。因此,这种场景具有明显不同的,但同样具有实际相关的需求。在这两种情况下,将利用小型卫星网络的具体特点来提高通信效率。这些特征包括网络站之间可预测的接触时间,以及对所获取数据的数量、来源和结构的了解。与其他领域相比,(太阳能)能源和其他资源的可用性和消耗也可以提前很好地预测。这可用于传输规划或卫星之间的合作数据聚合。设计的协议和机制将通过模拟和实验进行分析性评估。
英文摘要
Space flight is facing a paradigm shift: groups of small, cooperating satellites are more and more considered as a promising alternative to classical monolithical satellite systems. This allows for more flexible missions and new application scenarios, in combination with reduced cost and improved resilience, but at the same time demands new and - compared to the state of the art in the field - significantly more complex communication and coordination mechanisms. The proposed project will establish a basis for communication mechanisms in future systems of cooperating small satellites. The aim is a robust overall system which makes efficient use of communication bandwidth and energy and which can deal with and compensate (partial) faults. It is, for instance, necessary to exchange status and position information between satellites, to transfer sensor data to the ground in an energy-efficient way and to communicate commands reliably to the satellite network.The project uses two specific scenarios from the area of earth observation as a starting point and focuses on questions of communication protocol design in such systems. The first scenario considers a formation of earth observation satellites, that is, a group of satellites which stay relatively close together and cooperatively adjust their orientation. Together they perform optical or magnetical measurements and make use of their position offsets for simultaneous measurements at multiple locations or from different angles. The second scenario is based on a satellite constellation, i.e., satellites on spatially widely separated orbits, which track the current positions of transponders (e.g., on trains, ships or airplanes) in a vast area. This scenario therefore comes with significantly different, but nevertheless likewise practically relevant requirements.In both cases the specific characteristics of small satellite networks will be leveraged to increase the communication efficiency. These characteristics include predictable contact times between network stations and knowledge about the amount, origin and structure of aquired data. In comparison to other fields, the availability and consumption of (solar) energy and other resources can also be predicted well in advance. This can be used for transmission planning or for cooperative data aggregation between satellites. The designed protocols and mechanisms will be evaluated analytically, through simulations and in experiments.
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Überlastkontrollmechanismen für Anonymisierungs-Overlays
  • 批准号:
    153478940
  • 项目类别:
    Research Grants
  • 资助金额:
    $0.0万
  • 财政年份:
    2010
  • 负责人:
    Professor Dr. Björn Scheuermann
  • 依托单位:
海外基金