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A Paradigm Shift to Enable More Cost Effective Space Science Telescope Missions in the Upcoming Decades

机译:范式转变,以在即将到来的十年中实现更具成本效益的空间科学望远镜任务

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Modern astronomy currently is dealing with an exciting but challenging dichotomy. On one hand, there has been and will continue to be countless advances in scientific discovery, but on the other the astronomical community is faced with what unfortunately is considered by many to be an insurmountable budgetary impasse for the foreseeable future. The National Academy of Sciences' Astro2010: Decadal Survey has been faced with the difficult challenge of prioritizing sciences and missions for the upcoming decade while still allowing room for new, yet to be discovered opportunities to receive funding. To this end, we propose the consideration of a paradigm shift to the astronomical community that may enable more cost efficient space-based telescope missions to be funded and still provide a high science return per dollar invested. The proposed paradigm shift has several aspects that make it worthy of consideration: 1) Telescopes would leverage existing Commercial Remote Sensing Satellite (CRSS) Architectures such as the 1.1m NextView systems developed by ITT, GeoEye-1, and WorldView-2, or the 0.7m IKONOS system (or perhaps other proprietary systems); 2) By using large EELV class fairings, multiple telescopes with different science missions could be flown on a single spacecraft bus sharing common features such as communications and telemetry (current Earth Science missions in early development phases are considering this approach); 3) Multiple smaller observatories (with multiple spacecraft) could be flown in a single launch vehicle for instances where the different science payloads had incompatible requirements; and 4) by leveraging CRSS architectures, vendors could supply telescopes at a fixed price. Here we discuss the implications and risks that the proposed paradigm shift would carry.
机译:现代天文学目前正在处理令人兴奋但具有挑战性的二分法。一方面,科学发现已经并将继续取得无数进步,但另一方面,在可预见的未来,天文学界面临着不幸的是,许多人认为这是无法克服的预算僵局。美国国家科学院的《 Astro2010:十年调查》面临着艰巨的挑战,即在未来十年中优先安排科学和任务,同时仍为获得尚未发现的新机会提供资金。为此,我们建议考虑向天文界转移范式,这可能使能够为更具成本效益的天基望远镜任务提供资金,并且仍能为每美元投入提供高科学回报。拟议的范式转换具有几个方面值得考虑:1)望远镜将利用现有的商业遥感卫星(CRSS)架构,例如ITT,GeoEye-1和WorldView-2开发的1.1m NextView系统,或者0.7m IKONOS系统(或其他专有系统); 2)通过使用大型EELV整流罩,可以将具有不同科学任务的多架望远镜乘坐具有共享通信和遥测等共同特征的单个航天器总线上飞行(目前处于早期开发阶段的地球科学任务正在考虑采用这种方法); 3)在不同的科学有效载荷有不兼容要求的情况下,可以在单个运载火箭上飞行多个较小的观测站(带有多个航天器); 4)利用CRSS架构,供应商可以固定价格提供望远镜。在这里,我们讨论提议的范式转换将带来的影响和风险。

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