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An active surface upgrade for the Delingha 13.7-m Radio Telescope

机译:积极改进Delingha 13.7米射电望远镜的地面

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An upgrade program is proposed for the Delingha 13.7-m radio telescope to implement active surface for multi-beamobservation at 3 mm wavelength. The upgrade involves three critical development aspects. One is the displacementactuator, which must fit the existing position, space and connections of the panels and backup structure, meanwhile, must be as compact and lightweighted as possible. The second is that a new sub-reflector is necessitated by the multi-beam observation, where a new hyperbolic surface figure is optimized. The third, more crucial and difficult, is to realize active control of the actuators and real-time closed-loop of the full active surface. This paper is to present the progress of the development work, test and experiments associated with the three areas. With one of the spare panels of the telescope, an experiment system is carried out with six sets of actuator and control electronics. Another experiment system of a novel laser-based closed-loop measurement concept is also conducted with four smaller dummy panels. Both experiment setups have output expected results and further experiments are going on with them. In this paper, based on the two experiments, we will describe the special design and test of the actuator, including the design of its special mounting and connecting mechanisms. The design and manufacture and measurement of the new hyperbolic sub-reflector will be detailed as well as the principle, simulation and realization of the laser-based measurement system. Besides, the control strategy of the large scale use of the hundreds of actuators and EMI suppression are also covered.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:为Delingha 13.7米射电望远镜提出了一个升级程序,以在3 mm波长下实现有效表面以进行多波束测距。升级涉及三个关键的开发方面。一种是位移执行器,它必须适合面板和备用结构的现有位置,空间和连接,同时必须尽可能紧凑和轻便。第二个是通过多光束观察,必须使用新的副反射镜,其中要优化新的双曲表面图形。第三,更关键和更困难的是实现对致动器的主动控制和整个主动表面的实时闭环。本文将介绍与这三个领域相关的开发工作,测试和实验的进展。使用望远镜的备用面板之一,用六套执行器和控制电子设备进行实验系统。还使用四个较小的虚拟面板进行了另一种基于激光的闭环测量概念的实验系统。这两个实验设置都输出了预期的结果,并且正在进行进一步的实验。在本文中,基于这两个实验,我们将描述执行器的特殊设计和测试,包括其特殊安装和连接机构的设计。将详细介绍新型双曲副反射器的设计,制造和测量以及基于激光的测量系统的原理,仿真和实现。此外,还涵盖了数百个执行器的大规模使用和EMI抑制的控制策略。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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