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超导电缆测试测量站的性能改进

Performance improvement of a measurement station for superconducting cable test.

作者信息

Arpaia Pasquale, Bottura Luca, Montenero Giuseppe, Le Naour Sandrine

机构信息

Engineering Department, University of Sannio, 82100 Benevento, Italy.

出版信息

Rev Sci Instrum. 2012 Sep;83(9):095111. doi: 10.1063/1.4752410.

Abstract

A fully digital system, improving measurements flexibility, integrator drift, and current control of superconducting transformers for cable test, is proposed. The system is based on a high-performance integration of Rogowski coil signal and a flexible direct control of the current into the secondary windings. This allows state-of-the-art performance to be overcome by means of out-of-the-shelf components: on a full-scale of 32 kA, current measurement resolution of 1 A, stability below 0.25 A min(-1), and controller ripple less than ±50 ppm. The system effectiveness has been demonstrated experimentally on the superconducting transformer of the Facility for the Research of Superconducting Cables at the European Organization for Nuclear Research (CERN).

摘要

本文提出了一种全数字系统,该系统用于电缆测试,可提高超导变压器测量的灵活性、积分器漂移和电流控制能力。该系统基于罗果夫斯基线圈信号的高性能集成以及对次级绕组电流的灵活直接控制。这使得利用现成的组件就能超越当前的技术水平:在32 kA的满量程下,电流测量分辨率为1 A,稳定性低于0.25 A min⁻¹,控制器纹波小于±50 ppm。该系统的有效性已在欧洲核子研究组织(CERN)超导电缆研究设施的超导变压器上通过实验得到验证。

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