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NEOTωIST - An Asteroid Impactor Mission Featuring Sub-spacecraft for Enhanced Mission Capability

机译:Neotωist - 一个小行星撞击者使命,以子航天器为特色,以增强任务能力

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Near Earth Object (NEO) deflection for the purpose of planetary defense has become increasingly recognized as a valid and valuable endeavour. NEOTωIST stands for Near-Earth Object Transfer of angular momentum (ω) Spin Test. This describes a demonstration mission intended to develop the capabilities required to execute an effective kinetic impactor NEO deflection mission. The chosen measurement technique and employment of small sub-spacecraft for observation purposes represent a novel approach to achieving the main goals of such a demonstration mission. The approach promises comparatively low cost and features capabilities that are unique and valuable for an operational deflection mission. Most standard deflection demonstration missions propose to quantify momentum transfer from the impactor spacecraft to the target object by measuring a change in its heliocentric orbit. The change is typically so small that it must be performed via radio-science from a second observer spacecraft which rendezvous with the NEO prior to impact. In our case the NEO is struck off-center which changes its spin rate. This rate change, which can be measured from Earth via light curve measurements, allows quantification of the transferred momentum. Using this measurement method the need for an observer spacecraft for the purpose of NEO orbit measurement is eliminated. The second function of the observer spacecraft is the close-up observation of the impact event for improvement of impact effectiveness modelling. The NEOTωIST mission achieves this observation by deploying several small sub-spacecraft from the main impactor spacecraft shortly before impact. These sub-spacecraft allow observation of the impact event from multiple vantage points some of which are unique because their destruction is accepted. At least one sub-spacecraft trajectory is planned such that survival is guaranteed, which enables it to receive observation data from the other spacecraft for delayed transmission to Earth. We present the overall mission concept as well as preliminary design work on the key technical challenges, in particular those associated with the highly dynamic operation of the small sub-spacecraft that are a key feature of the NEOTωIST mission.
机译:靠近地球对象(Neo)偏转为行星防御的目的已经越来越被认为是有效和有价值的努力。 NeotΩist代表近地上的角动量(ω)旋转试验。这描述了一个演示特派团,旨在开发执行有效的动力学撞击者Neo偏转使命所需的能力。所选择的测量技术和小型亚航站楼的使用用于观察目的代表了实现这种示范使命的主要目标的新方法。该方法承诺相对低的成本和特征能力,对操作偏转使命是独特的和有价值的。大多数标准偏转示范特派团提议通过测量其天尖轨道的变化来量化从撞击者航天器到目标对象的动量转移。变化通常很小,即必须通过来自第二个观察者航天器的无线电科学来执行,该航天器在撞击之前与NEO共同进行。在我们的情况下,NEO被击中的偏离中心,改变其旋转速率。该速率变化可以通过光曲线测量从地球测量,允许量化转移的势头。使用该测量方法,消除了对Neo轨道测量目的的观察者航天器的需求被消除。观察者航天器的第二个功能是改善冲击效果建模的冲击事件的特写观察。 NeotωistMission在撞击前短暂地从主影撞击器航天器部署几个小子航天器来实现这一观察。这些子航天器允许观察来自多个Vantage点的影响事件,其中一些有些有利点是独一无二的,因为它们的破坏被接受。计划至少有一个子航天器轨迹,使得保证存活率,这使得它能够从其他航天器接收观察数据以延迟传输到地球。我们展示了整体任务概念以及对关键技术挑战的初步设计工作,特别是与小型亚航站楼的高度动态操作相关的那些,这是一个新的新型任务的关键特征。

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