首页> 外文会议>IEEE Aerospace Conference >Space Mobile Network: A near Earth communications and navigation architecture
【24h】

Space Mobile Network: A near Earth communications and navigation architecture

机译:太空移动网络:近地通信和导航架构

获取原文

摘要

This paper shares key findings of NASA's Earth Regime Network Evolution Study (ERNESt) team resulting from its 18-month effort to define a wholly new architecture-level paradigm for the exploitation of space by civil space and commercial sector organizations. Since the launch of Sputnik in October 1957 spaceflight missions have remained highly scripted activities from launch through disposal. The utilization of computer technology has enabled dramatic increases in mission complexity; but, the underlying premise that the diverse actions necessary to meet mission goals requires minute-by-minute scripting, defined weeks in advance of execution, for the life of the mission has remained. This archetype was appropriate for a ¿¿¿new frontier¿¿¿ but now risks overtly constraining the potential market-based opportunities for the innovation considered necessary to efficiently address the complexities associated with meeting communications and navigation requirements projected to be characteristics of the next era of space exploration: a growing number of missions in simultaneous execution, increased variance of mission types and growth in location/orbital regime diversity. The resulting ERNESt architectural cornerstone ¿¿¿ the Space Mobile Network (SMN) ¿¿¿ was envisioned as critical to creating an environment essential to meeting these future challenges in political, programmatic, technological and budgetary terms. The SMN incorporates technologies such as: Disruption Tolerant Networking (DTN) and optical communications, as well as new operations concepts such as User Initiated Services (UIS) to provide user services analogous to today's terrestrial mobile network user. Results developed in collaboration with NASA's Space Communications and Navigation (SCaN) Division and field centers are reported on. Findings have been validated via briefings to external focus groups and initial ground-based demonstrations. The SMN opens new niches for exploitation by the marketplace of mission- planners and service providers.
机译:本文分享了美国宇航局地球制度网络演化研究(ERNESt)团队的主要发现,该团队经过18个月的努力,为民用空间和商业部门组织开发了一种全新的架构层范式,以开发空间。自1957年10月发射人造卫星以来,从发射到处置,航天飞行一直是高度脚本化的活动。计算机技术的使用大大增加了任务的复杂性。但是,实现任务目标所需采取的各种行动需要在执行任务的前几周内逐分钟编写脚本的基本前提是,任务的寿命一直存在。这种原型适合于“新前沿”,但现在面临着明显限制潜在市场机会的创新机会的风险,这些机会被认为是有效解决与满足通信和导航需求相关的复杂性的必要条件,而复杂性是预计成为下一个时代的特征太空探索:同时执行任务的数量不断增加,任务类型的差异增加以及位置/轨道制度多样性的增长。可以预见,由此产生的ERNESt建筑基石-太空移动网络(SMN)-对于创造一个满足政治,计划,技术和预算方面的未来挑战至关重要的环境至关重要。 SMN整合了以下技术:容错网络(DTN)和光通信,以及新的操作概念,例如用户初始服务(UIS),以提供类似于当今地面移动网络用户的用户服务。报告了与美国宇航局空间通信和导航(SCaN)部门以及外地中心合作开发的结果。通过向外部焦点小组进行的情况介绍和初步的地面演示,对发现进行了验证。 SMN为任务计划者和服务提供商的市场开拓了新的利基市场。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号