首页> 外文会议>IAC >IAC-13-D3.2.5.x18385 TYCHO: DEMONSTRATOR AND OPERATIONAL SATELLITE MISSION TO EARTH-MOON-LIBRATION POINT EML-4 FOR COMMUNICATION RELAY PROVISION AS A SERVICE
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IAC-13-D3.2.5.x18385 TYCHO: DEMONSTRATOR AND OPERATIONAL SATELLITE MISSION TO EARTH-MOON-LIBRATION POINT EML-4 FOR COMMUNICATION RELAY PROVISION AS A SERVICE

机译:IAC-13-D3.2.5.X18385 Tycho:示威者和运营卫星使命到地球 - 月亮 - Lib失真EML-4用于通信继电器提供服务

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In the current wake of mission plans to the Moon and to Earth-Moon libration points (EML) by several agencies and organizations TYCHO identifies the key role of telecommunication provision for the future path of lunar exploration. It demonstrates an interesting extension to existing communication methods to the Moon and beyond by combining innovative technology with a next frontier location and the commercial space communication sector. It is evident that all communication systems will rely on direct communication to Earth ground stations. In case of EML-2 missions around HALO orbits or bases on the far side of the Moon, it has to be extended by communication links via relay stations. The innovative approach is that TYCHO provides this relay communication to those out-of-sight lunar mission as a service. TYCHO will establish a new infrastructure for future missions and even create a new market for add-on relay services. The TMA-0 satellite is TYCHO's first phase and a proposed demonstrator mission to the Earth- Moon libration point EML-4. It demonstrates relay services needed for automated exploratory and manned missions (Moon bases) on the rim and far side surface, to lunar orbits and even to EML-2 halo orbits (satellites and space stations). Its main advantage is the permanent availability of communication coverage. This will provide full access to scientific and telemetry data and furthermore to crucial medical monitoring and safety. The communication subsystem is a platform for conventional communication but also a test-bed for optical communication with high data-rate LASER links to serve the future needs of manned bases and periodic burst data-transfer from lunar poles. The operational TMA-1 satellite is a stand-alone mission integrated in existing space communication networks to provide open communication service to external lunar missions. Therefore the long-time stable libration points EML-4 and -5 are selected to guarantee an operation time of up to 10 years. It also enables measurements of the libration point environment with the scientific payloads. This includes sensors for space dust, solar and cosmic radiation activity for satellite lifetime estimation and lunar crew protection by means of early-warning system. The paper describes the mission concept and the pre-design of the demonstrator satellite according to the operational mission requirements and advantages and benefits of this service. The concept was awarded with the Space Generation Advisory Council and OHB Scholarship in 2011 and the concept study is conducted at the Institute of Space Systems (IRS) [1] of University of Stuttgart with support of OHB-System, Bremen [2].
机译:在目前的任务计划到月球和地球 - 月亮的地域地位(EML)的唤醒,由若干机构和组织Tycho确定了电信条件对月球勘探道路的关键作用。通过将创新技术与下一个边界地点和商业空间通信领域结合,它展示了月球及更远的通信方法的有趣延伸。很明显,所有通信系统都将依靠地面地站直接沟通。在Halo轨道上的EML-2任务的情况下,它必须通过中继站通过通信链路扩展。创新的方法是Tycho将此中继通信提供给那些作为服务的视线之外的沟通。 Tycho将为未来的任务建立新的基础设施,甚至为附加中继服务创造一个新的市场。 TMA-0卫星是Tycho的第一阶段和建议的地球Libonation Point EML-4的示威机构。它演示了自动化探索和载人的任务(月球基地)在轮辋和远侧表面上的中继服务,到月球轨道甚至是EML-2光环轨道(卫星和空间站)。其主要优势是沟通覆盖的永久性可用性。这将提供对科学和遥测数据的完全访问,而且还提供至关重要的医疗监测和安全性。通信子系统是传统通信的平台,但也是与高数据速率激光链路的光通信的测试床,以满足载人基础的未来需求和来自月球杆的周期性突发数据传输。运营TMA-1卫星是一个独立的任务,集成在现有的空间通信网络中,以为外部农历任务提供开放的通信服务。因此,选择长时间稳定的自由点EML-4和-5以保证长达10年的操作时间。它还可以通过科学有效载荷进行Libration Point环境的测量。这包括通过预警系统进行卫星寿命估计和月球机组保护的空间灰尘,太阳能和宇宙辐射活动的传感器。本文根据该服务的运营任务要求和优点和优缺点介绍了使命概念和示范卫星的预设计。该概念在2011年获得了空间发电咨询委员会和OHB奖学金,在斯图加特大学的空间系统(IRS)[1]中进行了概念研究,支持OHB系统,不来梅[2]。

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