Advances in stretched and oscillating-wire methods for magnetic measurement

P. Arpaia, D. Caiazza, G. Deferne, C. Petrone, S. Russenschuck
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引用次数: 2

Abstract

A versatile measurement system has been designed and commissioned at CERN, which is based on a wire sensor in different modes of operation: the classical single-stretched wire mode, the oscillating wire mode employing frequencies well below the first natural resonance, as well as the vibrating wire mode where the wire is excited in the first or higher-order resonance conditions. In this paper, the main technical challenges and constraints of the wire methods are presented, together with the applications to locate the magnetic axis of a string of magnets on a common girder and to the measurement of multipole errors. Sources of uncertainty, stemming from the wire motion unsuitability, are discussed, different wire motion transducers are compared, and the effect of background fields and environmental effects is studied.
磁测量中拉伸线法和振荡线法的研究进展
欧洲核子研究中心设计并调试了一个多功能测量系统,该系统基于不同操作模式的线传感器:经典的单拉伸线模式,振荡线模式,使用频率远低于第一次自然共振,以及振动线模式,其中线在一阶或高阶共振条件下被激发。本文介绍了导线法的主要技术挑战和制约因素,以及在公共梁上一串磁体的磁轴定位和多极误差测量中的应用。讨论了由导线运动不适宜性引起的不确定性来源,比较了不同的导线运动传感器,并研究了背景场和环境效应的影响。
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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