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Small Satellite Rendezvous and Characterization of Asteroid 99942 Apophis

机译:小卫星共因和小行星的表征99942尖端

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The Measurement and Analysis of Apophis Trajectory (MAAT) concept study investigated a low-cost characterization mission to the asteroid 99942 Apophis that leverage small spacecraft architectures and technologies. The mission goals were to perform physical characterization and improve the orbital model. The MAAT mission uses a small spacecraft free flyer and a bi-propellant transfer stage that can be incorporated as a secondary payload on Evolved Expendable Launch Vehicles (EELVs), Atlas V or Delta IV launches. Using the innovative secondary architecture allows the system to be launched on numerous GTO or LTO opportunities such as NASA science missions or commercial communication satellites. The trajectory takes advantage of the reduced Delta-V requirement during the 2012-2015 time frame, with a large flexible launch opportunity, from January to November 2012 and heliocentric injection occurs in April 2013. Primary communications use the traditional Deep Space Network (DSN) with a secondary system using a laser link demonstrating the technology at greater than Earth-Moon distances. The spacecraft uses Commercial Off The Shelf (COTS) components and technologies in combination with a reduced Lunar CRater Observation and Sensing Satellite (LCROSS) instrument suite. The suite includes a high-resolution navigation camera, two visible mapping cameras, an infrared camera and a laser ranger. The study of both the physical and dynamical properties of Apophis requires a rendezvous mission, with the spacecraft operating for several months in close proximity. Physical characterization occurs over three months and includes determining the mass, density, dynamical state, topography, and geological context of the object that is difficult too determine or cannot be determined from ground based instruments. Tracking of the spacecraft over several months using the Deep Space Network (DSN) ensures increased accuracy in orbit determination and combined with physical characterization allows for the study of non-gravitational forces, such as the Yarkovsky effect. The science data and analysis can yield physical and orbital characteristics of Apophis several orders of magnitude better than currently estimated and provide science data that cannot be achieved with ground-based instruments.
机译:测量和阿波菲斯轨迹(MAAT)的概念研究分析调查了低成本的特性使命小行星小行星99942,充分利用小型航天器架构和技术。任务目标是执行物理特性,提高了轨道模型。所述MAAT任务使用一个小航天器自由传单,并且可以被并入作为演进的消耗性运载火箭(EELVs),阿特拉斯V或德尔塔IV发射的二次有效载荷的双推进剂转移阶段。使用创新的次级结构使得系统在众多GTO或LTO机会,推出诸如NASA科学任务或商业通信卫星。轨迹利用的减少三角洲-V要求2012 - 2015年这段时间内,有一个大的机动发射机会,1至2012年11月和发生在4日心注入2013年主要通信使用传统的深空网络(DSN)与使用激光链路展示技术在大于地球月球距离的辅助系统。飞船采用商用现货(COTS)的组件和技术与减少的月球陨坑观测和遥感卫星(LCROSS)工具套件组合。该套件包括一个高分辨率导航摄像机,可见两个映射摄像机,红外摄像机和激光测距仪。阿波菲斯的物理和动力学性质的研究需要一个集合点的任务,与飞船运行在接近数月。物理表征发生超过三个月和包括确定的质量,密度,动态状态,地形,那就是困难的太确定或不能从基于地面仪器确定的物体的地质上下文。在使用深空网络数月航天器的跟踪(DSN)确保增加在轨道确定精度和物理特性相结合,使非引力,如亚尔科夫斯基效应的研究。科学数据和分析可以产生阿波菲斯几个数量级的物理和轨道特性优于目前的估计,并提供不能与地面的仪器来实现科学数据。

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