超导磁体阻抗的低频解析模型

IF 0.8 Q3 ENGINEERING, MULTIDISCIPLINARY
M. Martino
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引用次数: 0

摘要

用于粒子加速器的超导磁体通常被建模为理想的电感,因为它确实表现出完全可以忽略不计的电阻;这是完全令人满意的,作为一个例子,用于控制目的,因为由磁体电感和连接到功率转换器的普通导电电缆的电阻形成的时间常数准确地描述了电路的主要动态。然而,这样的模型不能正确地代表在实际超导磁体中起作用的噪声衰减机制,这些超导磁体还包括在孔径内部的真空管或束屏,外部的铁轭,以及可能在两者之间的不锈钢或铝环。因此,即使在相对较低的频率下,也需要更精确的模型。本文提出并举例说明了一个足够普遍的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-Frequency Analytical Model of Superconducting Magnet Impedance
A superconducting magnet for particle accelerators is often modeled as an ideal inductor, as it indeed exhibits a completely negligible resistance; this is fully satisfactory, as an example, for control purposes, as the time constant formed by the magnet inductance and the resistance of normal conducting cables connecting it to the power converter accurately describe the essentially dominant dynamics of the circuit. Such a model would however fail to correctly represent the noise attenuation mechanism at play in practical superconducting magnets, which also include a vacuum pipe or a beam screen in the inner part of the aperture, an iron yoke on the outer part, and, potentially, a stainless steel or aluminum collar in between. Even at relatively low frequencies, a more accurate model is therefore needed. A sufficiently general one is proposed and illustrated.
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来源期刊
Modelling and Simulation in Engineering
Modelling and Simulation in Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
2.70
自引率
3.10%
发文量
42
审稿时长
18 weeks
期刊介绍: Modelling and Simulation in Engineering aims at providing a forum for the discussion of formalisms, methodologies and simulation tools that are intended to support the new, broader interpretation of Engineering. Competitive pressures of Global Economy have had a profound effect on the manufacturing in Europe, Japan and the USA with much of the production being outsourced. In this context the traditional interpretation of engineering profession linked to the actual manufacturing needs to be broadened to include the integration of outsourced components and the consideration of logistic, economical and human factors in the design of engineering products and services.
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