A 4 mm Micro Servo Control System in Fiber Positioner

IF 2.2 3区 工程技术 Q2 ENGINEERING, MECHANICAL Actuators Pub Date : 2023-12-17 DOI:10.3390/act12120470
Shaoxiong Guo, Yan Yang, Chao Zhai
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Abstract

As multi-object spectrographs (MOSs) continue to evolve, a notable trend has emerged—the increasing accommodation of fiber positioners on ever-more compact focal planes. This progression has seen the traditional stepper motors being supplanted by more space-efficient miniature hollow-cup motors. A significant challenge faced in the employment of these 4 mm diameter motors is the absence of compatible angle sensors, resulting in reliance on open-loop control methods for positioning. Addressing this challenge, this paper introduces a novel miniature angle sensor designed specifically for 4 mm hollow-cup motors, and presents a newly formulated closed-loop control scheme, which leverages this sensor to achieve accurate positioning. This marks the first implementation of an angle closed-loop control system within a 4 mm miniature hollow-cup motor used in MOS fiber positioners. Experimental evidence suggests that this sensored closed-loop mode substantially improves upon the energy efficiency and precision of fiber positioner placement, compared with traditional open-loop stepper control methods. Furthermore, the integration of these microsensors mitigates collision risks during the concurrent operation of fiber positioners by deactivating the motor power supply to prevent potential damage to the system.
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光纤定位器中的 4 毫米微型伺服控制系统
随着多目标摄谱仪(MOS)的不断发展,出现了一个显著的趋势--光纤定位器越来越多地安装在更加紧凑的焦平面上。在这一发展过程中,传统的步进电机被空间效率更高的微型空心杯电机所取代。在使用这些直径为 4 毫米的电机时,面临的一个重大挑战是缺乏兼容的角度传感器,因此只能依靠开环控制方法进行定位。为了应对这一挑战,本文介绍了一种专为 4 毫米空心杯电机设计的新型微型角度传感器,并提出了一种新制定的闭环控制方案,利用该传感器实现精确定位。这标志着在 MOS 光纤定位器中使用的 4 毫米微型空心杯电机中首次实现了角度闭环控制系统。实验证明,与传统的开环步进控制方法相比,这种传感器闭环模式大大提高了光纤定位器的能效和定位精度。此外,通过停用电机电源,这些微型传感器的集成还能降低光纤定位器同时运行时的碰撞风险,防止对系统造成潜在的损坏。
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来源期刊
Actuators
Actuators Mathematics-Control and Optimization
CiteScore
3.90
自引率
15.40%
发文量
315
审稿时长
11 weeks
期刊介绍: Actuators (ISSN 2076-0825; CODEN: ACTUC3) is an international open access journal on the science and technology of actuators and control systems published quarterly online by MDPI.
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