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首页> 外文期刊>IEEE Aerospace and Electronic Systems Magazine >Improving Small Satellite Communications in Deep Space—A Review of the Existing Systems and Technologies With Recommendations for Improvement. Part I: Direct to Earth Links and SmallSat Telecommunications Equipment
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Improving Small Satellite Communications in Deep Space—A Review of the Existing Systems and Technologies With Recommendations for Improvement. Part I: Direct to Earth Links and SmallSat Telecommunications Equipment

机译:改善了深度空间的小型卫星通信 - 以改进建议对现有系统和技术的审查。第一部分:直接到地球链接和小型电信设备

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Robotic exploration of the solar system using small satellites (SmallSats) is gaining popularity because of SmallSats' lower cost and faster development cycle compared to primary science missions. A potential obstacle for deployment of SmallSats in deep space is the limitation associated with the communications link imposed by SmallSats' frugal power and antenna size. These technical limitations constrain the range and throughput of SmallSats and may impact their navigation performance. To allow SmallSats to play a greater role in deep space science endeavors, we propose an enhanced communications architecture that will lessen the communications disparity between larger, more expensive missions and SmallSats. The objectives of the study are to define a communications architecture, in-flight and flight-to-ground, that is needed for planetary SmallSats, both standalone or in support of a larger mission; and to develop a guideline for primary spacecraft that would communicate with ride-along SmallSats. This work treats the space segment and the ground network as a whole to provide for improvements not only via investments in technology, but also via improvements in operational procedures. The study includes reviews of current communication concepts, technologies, and procedures, as well as an assessment of navigation needs, evaluation of the communication architecture performance for a range of destinations and applications, and identification of any gaps in capability. The study product is a set of recommendations to space agencies and the planetary SmallSat community. The main thrust of these recommendations is investment in technology, such as radios, antennas, protocols, and methodologies. The concepts for improving communications capability of deep space SmallSats are discussed in a series of three articles, Improving Small Satellite Communications in Deep Space. In this article, Part I, we discuss SmallSat direct-to-Earth links, as well as SmallSat communications equipment. In Part II, we discuss navigation topics, proximity links and networks, and the use of the communications channel for science observations. We present the ground network in Part III. Definitions and assumptions are provided here in Part I.
机译:由于小型科学任务相比,使用小型卫星(小型SAMINGS)使用小卫星(小乳酪)的太阳能系统的机器人勘探是越来越受欢迎的。在深度空间中部署小型物的潜在障碍是与小于小索斯节俭电力和天线尺寸所施加的通信链路相关的限制。这些技术限制限制了小型物的范围和吞吐量,可能影响其导航性能。为了让小狗在深度空间科学的努力中发挥更大的作用,我们提出了一种增强的通信架构,将减少更大,更昂贵的任务和小型的通信差异。该研究的目标是定义连通架构,飞行飞行和飞行地,这是行星小型的行星小孩,既有独立的或支持较大的使命;并为主要航天器制定一项指导意见,该指导意见与沿着沿着沿着骑行的小型人沟通。这项工作将空间段和地面网络整体进行了整体,不仅通过技术投资来提供改进,而且还通过改进操作程序。该研究包括当前通信概念,技术和程序的审查,以及对导航需求的评估,评估一系列目的地和应用程序的通信架构性能,以及识别能力中的任何间隙。该研究产品是空间机构和行星小型社区的一系列建议。这些建议的主要推动力是技术的投资,如无线电,天线,协议和方法。在一系列三篇文章中讨论了提高深空小屋通信能力的概念,从而改善了深空中的小卫星通信。在本文中,第一部分,我们讨论小型直接到地球链接,以及小型通信设备。在第二部分,我们讨论导航主题,邻近链接和网络,以及使用通信通道进行科学观察。我们在第三部分提出了地面网络。在此处提供定义和假设在此部分I.

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