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Laboratory and field testing results of the LMT/GTM primary surface actuators

机译:LMT / GTM主表面执行器的实验室和现场测试结果

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With the final installation of the two outermost rings of the primary surface of the Large Millimeter Telescope/Gran Telescopio Milimétrico (LMT/GTM), the project is also upgrading the primary surface actuators. There are commercial actuators that can approach the required operational accuracy and stroke, but the combination of the size and load requirements ultimately required a customized design. The new actuators fit within the volume constraints imposed by the tighter interior angles in the outer rings and are designed to support the operational and survival loading conditions even for the largest surface segments. Laboratory testing confirmed that the actuators should meet the precision, repeatability, load, and lifetime requirements. However, the LMT/GTM is at a particularly difficult site for electromechanical systems. The high altitude has the usual effect of reducing cooling effectiveness for the drives and motors, and the ambient temperature hovers near freezing. Since there is a significant amount of precipitation during some times of the year, there are frequent freeze/thaw cycles. The constant formation and either sublimation or melting of ice, along with the associated high humidity, has been a challenge for the environmental protection of many devices at the LMT/GTM. Because there are a total of 720 primary surface actuators in the system, it is particularly important that the actuators, their local drive control boxes, and their cable connections be able to meet its specifications even under the site conditions. To confirm the suitability of the actuators, the LMT/GTM procured an initial set of sixteen actuators for testing at the site. After laboratory testing, the actuators were installed into the outer two rings of the telescope and cycled during the early winter months of the 2015-16 scientific observing season. Because of the continuing installation activities in these two rings, they are not illuminated by the receivers, so field testing under actual operational conditions could be conducted without affecting the ongoing scientific observations. This paper presents the characterized performance of the actuators before and after testing, as well as a report on their environmental robustness.
机译:随着大型毫米望远镜/ Gran TelescopioMilimétrico(LMT / GTM)的两个最外面的最终安装,该项目还升级了主要表面执行器。有商业执行器可以接近所需的操作准确性和行程,但尺寸和负载要求的组合最终需要定制设计。新的致动器符合外环中的更紧密的内部角度施加的体积限制,并且甚至用于支撑操作和生存负载条件,即使对于最大的表面段也是如此。实验室测试证实,执行器应符合精度,可重复性,负载和寿命要求。然而,LMT / GTM在一个特别困难的机电系统的场地。高海拔具有降低驱动器和电动机的冷却效能的常用效果,环境温度悬停在冻结附近。由于在一年中的某个时间存在大量的降水,因此存在频繁的冻融/解冻循环。冰的恒定形成和升华或熔化以及相关的高湿度,对于LMT / GTM的许多器件来说是一种挑战。由于系统中总共有720个主要表面执行器,因此致动器,局部驱动控制箱及其电缆连接尤其重要,即使在现场条件下也能够满足其规格。为了确认执行器的适用性,LMT / GTM采购了一组初始的十六个执行器,用于在现场进行测试。在实验室测试之后,执行器安装在望远镜的外部两个环上,并在2015-16季度科学观测季节的冬季冬季循环。由于在这两个环中的持续安装活动,因此不能由接收器照亮,因此可以在实际操作条件下进行现场测试,而不会影响正在进行的科学观察。本文介绍了测试前后执行器的特征性能,以及对环境鲁棒性的报告。

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