Tuning the narrow-band beam position monitor sampling clock to remove the aliasing errors in APS storage ring orbit measurements

X. Sun, O. Singh
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引用次数: 1

Abstract

The Advanced Photon Source storage ring employs a real-time orbit correction system to reduce orbit motion up to 50 Hz. This system uses up to 142 narrow-band rf beam position monitors (Nbbpms) in a correction algorithm by sampling at a frequency of 1.53 kHz. Several Nbbpms exhibit aliasing errors in orbit measurements, rendering these Nbbpms unusable in real-time orbit feedback. The aliasing errors are caused by beating effects of the internal sampling clocks with various other processing clocks residing within the BPM electronics. A programmable external clock has been employed to move the aliasing errors out of the active frequency band of the real-time feedback system (RTFB) and rms beam motion calculation. This paper discusses the process of tuning and provides test results.
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对窄带波束位置监测采样时钟进行了调谐,消除了APS存储环轨道测量中的混叠误差
先进光子源存储环采用实时轨道校正系统,将轨道运动降低到50 Hz。该系统使用多达142个窄带射频波束位置监视器(Nbbpms),采用校正算法,采样频率为1.53 kHz。一些Nbbpms在轨道测量中表现出混叠误差,使得这些Nbbpms无法用于实时轨道反馈。混叠误差是由内部采样时钟与BPM电子器件中驻留的各种其他处理时钟的跳动效应引起的。采用可编程外部时钟将混叠误差移出实时反馈系统(RTFB)的有源频带并进行波束运动的均方根计算。本文讨论了调优过程,并给出了测试结果。
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