Fast orbit beam stabilisation for a synchrotron

Ashley Napier, S. Gayadeen, S. Duncan
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引用次数: 10

Abstract

Synchrotron light sources can produce very intense beams of X-rays and ultra violet light for a range of applications, including protein crystallography, materials characterization and high resolution imaging. The Diamond Light Source is a 3rd generation synchrotron that has recently been constructed near Oxford, United Kingdom, which produces a 3 GeV electron beam in a ring of circumference of over 560 m. A key requirement of the process is that the vertical and horizontal location of the beam should be controlled to within 10% of the beam size, which corresponds to the RMS variation being less than 12.3 μm in the horizontal direction and 0.6 μm in the vertical direction. The beam location is subjected to disturbances caused by the effects of Insertion Devices and the effect of ground motion, particularly between 16 Hz and 30 Hz, where the ground motion is amplified by the resonances of the girders supporting the ring magnets. To achieve the specification, a fast beam stabilization feedback system is used to regulate the horizontal and vertical position of the beam in the presence of disturbances in the range 1 Hz to 100 Hz, using 170 sensors and actuators in both planes, positioned around the ring at a sampling rate of 10 kHz. This paper describes the design of the controller for this system and the results from the implementation are shown.
同步加速器的快速轨道光束稳定
同步加速器光源可以产生非常强烈的x射线和紫外线光束,用于一系列应用,包括蛋白质晶体学,材料表征和高分辨率成像。钻石光源是最近在英国牛津附近建造的第三代同步加速器,它在周长超过560米的环形中产生3gev的电子束。该工艺的一个关键要求是光束的垂直和水平位置控制在光束尺寸的10%以内,对应于水平方向的均方根变化小于12.3 μm,垂直方向的均方根变化小于0.6 μm。光束的位置受到插入装置的影响和地面运动的影响所引起的干扰,特别是在16 Hz和30 Hz之间,地面运动被支撑环形磁铁的大梁的共振放大。为了达到规格,使用快速波束稳定反馈系统来调节波束在1hz到100hz范围内的水平和垂直位置,在两个平面上使用170个传感器和执行器,以10khz的采样率定位在环周围。本文介绍了该系统的控制器设计,并给出了实现结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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