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The architecture of the active surface control system of the Large Millimeter Telescope

机译:大型毫米望远镜主动表面控制系统的体系结构

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One of the fundamental design principles of the LMT is that its segmented primary surface must be active: the position and orientation of each of the segments must be moved in order to maintain the precise parabolic surface that is required by the specifications. Consequently, a system of actuators, one at the corner of each segment, is used to move the segments to counteract surface deformations attributed to gravity or thermal effects. A new control system was designed and built within the project to implement an active surface at the LMT. The technical concept for the active surface control system is to provide a set of bus boxes with built-in control and I/O capabilities to run four actuators each. Bus boxes read the LVDT sensor position and limit switch status for each actuator and use this information to drive the actuator's DC motor, closing the position loop. Each bus box contains a DC power supply for the electronics, a second DC power supply for the motors, an embedded controller with I/O to close the position loop, and a custom printed circuit board to condition the LVDT signals and drive the motors. An interface printed circuit board resides in each actuator providing a single connector access to the LVDT, the motor, and the limit switches. During the fall of 2013, 84 bus boxes were commissioned to control the 336 actuators of the inner three rings of the telescope. The surface correction model was determined using holography measurements and the active surface system has been in regular use during the scientific observation at the LMT.
机译:LMT的基本设计原理之一是其分段的主表面必须处于活动状态:必须移动每个分段的位置和方向,以保持规格要求的精确抛物线表面。因此,在每个节段的一个角落处的致动器系统用于移动节段以抵消归因于重力或热效应的表面变形。在项目内设计并构建了一个新的控制系统,以在LMT上实现活动表面。主动表面控制系统的技术概念是提供一组具有内置控制和I / O功能的总线盒,以分别运行四个执行器。母线箱读取每个执行器的LVDT传感器位置和限位开关状态,并使用此信息来驱动执行器的直流电动机,从而闭合位置环。每个母线盒包含一个用于电子设备的直流电源,一个用于电动机的第二个直流电源,一个带有I / O的嵌入式控制器,用于闭合位置环,以及一个定制的印刷电路板,用于调节LVDT信号并驱动电动机。每个执行器中都有一个接口印刷电路板,可通过单个连接器访问LVDT,电机和限位开关。 2013年秋季,调试了84个母线盒,以控制望远镜内部三环的336个执行器。表面校正模型是使用全息测量确定的,并且在LMT进行科学观测期间已定期使用有源表面系统。

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