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The NASA Meter Class Autonomous Telescope: Ascension Island

机译:美国宇航局米级自治望远镜:升起岛

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The Meter Class Autonomous Telescope (MCAT) is the newest optical sensor dedicated to NASA's mission to characterize the space debris environment. It is the successor to a series of optical telescopes developed and operated by the JSC Orbital Debris Program Office (ODPO) to monitor and assess the debris environment in (1) Low Earth Orbit (LEO), (2) Medium Earth Orbit (MEO), and (3) Geosynchronous Orbit (GEO), with emphasis on LEO and GEO altitudes. A joint NASA - Air Force Research Labs project, MCAT is a 1.3m optical telescope dedicated to debris research. Its optical path and sensor yield a large survey fence at the cutting edge of current detector performance. It has four primary operational observing modes, two of which were not computationally feasible a decade ago. Operations are supported by a sophisticated software suite that monitors clouds and weather conditions, and controls everything from data collection to dome rotation to processing tens of gigabytes of image data nightly. With fainter detection limits, precision detection, acquisition and tracking of targets, multi-color photometry, precision astrometry, automated re-acquisition capability, and the ability to process all data at the acquisition rate,. MCAT is capable of producing and processing a volume and quality of data far in excess of any current (or prior) ODPO operations. This means higher fidelity population inputs and eliminating the multi-year backlog from acquisition-to-product typical of optical campaigns. All of this is possible given a suitable observing location. Ascension Island offers numerous advantages. As a British overseas territory with a US Air Force base presence, the necessary infrastructure and support already exists. It is located mid-way between Brazil and Africa at 7.93S latitude and 14.37 W longitude. With the Ground-based Electro-Optical Deep Space Surveillance (GEODSS) asset in Mòron, Spain shutting down, this presents access to the sky from a unique latitude/longitude for an optical telescope. Constant trade winds from the SSE, originating from Africa, give promise to a steady laminar airflow over an island, a trait sought after to create stable atmospheric and good astronomical 'seeing' conditions with very low annual rainfall values. This combination of attributes created the necessary compelling argument to redirect MCAT to its final destination: Ascension Island.
机译:米类自治望远镜(MCAT)是最新的光学传感器,专用于NASA的特征,以表征空间碎片环境。它是由JSC轨道碎片计划办公室(ODPO)开发和操作的一系列光学望远镜的继承者,以监测和评估(1)低地球轨道(LEO),(2)中地球轨道(MEO)的碎片环境(3)地球同步轨道(地理),重点是狮子座和地理海拔。 NASA - 空军研究实验室项目,MCAT是一个1.3米的光学望远镜,致力于碎片研究。其光路和传感器在电流检测器性能的切削刃处产生大型调查围栏。它有四种主要的操作观测模式,其中两个是十年前的计算方式。通过监控云和天气条件的复杂软件套件支持操作,并控制从数据收集到圆顶旋转的所有内容,以处理数十千兆字节的图像数据。具有较微弱的检测限制,精度检测,获取和跟踪目标,多色测光,精度,ASTROMERY,自动重新采集能力以及以采集率处理所有数据的能力,。 MCAT能够生产和处理远超过任何当前(或先前)ODPO操作的数据的体积和质量。这意味着更高的保真性群体投入,并从采集到产品典型的光学广告系列中消除了多年积压。所有这些都可以给出合适的观察位置。 Ascension Island提供了许多优势。作为美国空军基地存在的英国海外领土,已经存在必要的基础设施和支持。它位于巴西和非洲之间的半途而废,在7.93s纬度和14.37 W经度。随着Mòron的基础电光深空监控(Geods)资产,西班牙关闭,这呈现出对光学望远镜的独特纬度/经度的天空。来自SSE的恒定贸易风,来自非洲,向一个岛上的稳定层流气流给予承诺,一个特质追求的是创造稳定的大气和良好的天文学“看到”的年降低价值。这种属性的组合为将MCAT重定向到其最终目的地:Ascension Island的这种组合。

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