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SOAR Telescope: 4 Meter High Performance Mount Performance Results

机译:SOAR望远镜:4米高的性能安装性能结果

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The 4.1-meter SOuthern Astrophysical Research (SOAR) Telescope mount and drive systems have been commissioned and are in routine operation. The telescope mount, the structure and its fall drive systems, was fully erected and tested at the factory prior to reassembly and commissioning at the observatory. This successful approach enabled complete integration, from a concrete pier to a pointing and tracking telescope, on the mountain, in a rapid 3-month period. The telescope mount with its high instrument payload and demanding efficiency requirements is an important component for the success of the SOAR scientific mission. The SOAR mount utilizes rolling element bearings for both azimuth and elevation support, counter torqued sets of gear motors on azimuth and two frameless torque motors built into the elevation axles. Tracking jitter and it's associated spectra, pointing errors and their sources, bearing friction and servo performances are critical criteria for this mount concept and are important factors in achieving the mission. This paper addresses the performance results obtained during the integration, commissioning, and first light periods of the telescope mount system.
机译:4.1米南方天体物理研究(SOAR)望远镜安装和驱动系统已被委托,并在常规操作中。望远镜安装,结构及其秋季驱动系统,在工厂在工厂进行全面测试并在天文台调试之前进行测试。这种成功的方法使得从一个混凝土码头到山上的混凝土码头,在山上的快速3个月内,能够完全集成。望远镜安装凭借其高仪器有效载荷和苛刻的效率要求是飙升科学任务成功的重要组成部分。 SOAR安装座利用滚动元件轴承,用于方位角和高度支撑,方位角上的齿轮电动机组和两个无框架扭矩电动机内置在海拔轴上。跟踪抖动和它的相关光谱,指向误差及其来源,轴承摩擦和伺服性能是该坐骑概念的关键标准,并且是实现使命的重要因素。本文满足了望远镜安装系统的集成,调试和第一光周期期间获得的性能结果。

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