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COMMUNICATION ARCHITECTURE AND INTERNATIONAL POLICY RECOMMENDATIONS ENABLING THE DEVELOPMENT OF GLOBAL CUBESAT SPACE NETWORKS

机译:通信架构和国际政策建议支持全球CubeSat空间网络的发展

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Emerging technologies of CubeSat communication and navigation systems enable new approaches such as larger bandwidths, spectrum and security decrement and high speed communications. In order to create a vantage point, young professionals and students from the four corners of the earth had performed a comprehensive study at the 2014 Space Generation Congress in Toronto, Canada under "CubeSat Swarms Communication Networks and Policy Challenges" working group. While potential possibilities are endless for the structure of Cubesat networks, decisions made amongst the group were based on existing technologies and guidelines. Therefore, the working group discussed (1) short and long term technical challenges (2) policy requirements, (3) radio communication bandwidth limitations, (4) data collection and transmission regulations and (5) the standardization of the CubeSat communication system. Technical challenges for small satellite missions involve limitations of link budgets, the size of the deployable high gain antennas, optical and laser communication and the restriction of the link budget due to the interferences. In addition, policy issues have immaturities for frequency allocation and registration complimenting the short lifespan of CubeSats. The standardization of mission operations enables a space communication network architecture that of which is similar to the internet, incorporated into CubeSat Swarms. The group suggests a CubeSat network system architecture including inter-swarm and intra-swarm constellations, optical and laser communications and delay-tolerant networks (DTN). The proposed CubeSat communication network also consists of inter-swarm constellation communications along with intra-swarm constellations sustained through four different basic data links, a mother-daughter satellite framework, and net-neutrality throughout the network. In the meantime, policy regulation recommendations allow global communication by reducing data downlink time. Governments, as well as service providers, treat all data used online the same regardless of its origins,platform, and users. The standardization of the CubeSat network system was formed by operator expectations for high downlink speeds, equal priority for data transfers, and streamlined registrations. The simplified registration process for CubeSat-Swarms is more efficient by establishing new baseline legal framework, rules, and standards. This would help all users and operators in this sector, including entrepreneurs, licensing bodies, and end-users. Saving time for everyone while achieving maximum efficiency, utilization of the time and results are the end result of proposed system architecture by the working group.
机译:立方体卫星通信和导航系统的新出现的技术使新的方法,例如更大的带宽,频谱和安全递减和高速通信。为了创造一个有利位置,从地球的四个角落的年轻专业人士和学生进行了在2014年空间一代大会在加拿大多伦多“成群的立方体卫星通信网络和政策挑战”工作组下的综合研究。虽然潜在的可能性是无穷的立方体卫星网络的结构,该集团之间作出的决定是基于现有的技术和规范。因此,工作组中讨论(1)的短期和长期的技术挑战(2)策略要求,(3)无线电通信的带宽限制;(4)数据采集与传输法规和(5)在CubeSat通信系统的标准化。对于小型卫星飞行任务的技术挑战包括链路预算的限制,能展开的高增益天线,光学和激光通信的大小和链路预算受到干扰的限制。此外,政策问题对频率分配和注册称赞的CubeSat的寿命短不成熟。任务操作的标准化使得空间通信网络架构,其中,它类似于互联网,掺入的CubeSat成群。的组中提出了一种立方体卫星网络系统体系结构,包括间群内和群星座,光学和激光通信和延迟容忍网络(DTN)。所提出的立方体卫星通信网络还包括-群间星座通信与内部群星座一起通过四个不同的基本数据链路,母女卫星框架,网络中立整个网络持续。在此期间,政策调控建议允许通过减少数据下行时的全球通讯。不管它的起源,平台和用户的各国政府,以及服务提供商,治疗中使用的所有数据在网上相同。在CubeSat网络系统的标准化是通过操作员的期望的高下行速度,用于数据传输的优先级相等,并简化登记形成。为立方体卫星,成群的简化注册过程是通过建立新的基线的法律框架,规则和标准,更高效。这将帮助所有用户和运营商在这一领域,包括企业家,特许机构和最终用户。节省时间,每个人都同时达到最大的效率,时间利用率和结果提出了系统的体系结构由工作组的最终结果。

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