首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Low-complexity voltage and current sources for large-scale quench detection of high-temperature superconducting cables
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Low-complexity voltage and current sources for large-scale quench detection of high-temperature superconducting cables

机译:低复杂度的电压和电流源,用于高温超导电缆的大规模失超检测

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摘要

In this work, the design of precision voltage and current sources for a new quench detection system for the protection of superconducting power cables is proposed. The key strength of the design resides in its low complexity, which allows to obtain a low-cost and reliable hardware implementation for the new detector. The voltage source output goes from 200 mV to 800 mV, while the current source output is adjustable between 50 mA and 1 A. Experimental results from the sources characterization campaign validate the design: 24-hours time stability is demonstrated to be about 20 ppm for the voltage source, and below 1000 ppm for the minimum current of 50 mA of the current source. Furthermore, the measured superposed noise is less than -80 dBV and the Mean Time Between Failures (MTBF) is estimated to be about 20 million hours for both sources. The improvement of the quench detector features is also demonstrated through further experiments. The obtained results demonstrate the effectiveness of the proposed detection mechanism and pave the way for further research on large-scale use of high-temperature superconducting cables.
机译:在这项工作中,提出了一种用于保护超导电力电缆的新型失超检测系统的精密电压和电流源的设计。该设计的关键优势在于其低复杂性,这使得该新型检测器能够获得低成本且可靠的硬件实现。电压源输出范围从200 mV到800 mV,而电流源输出可在50 mA和1 A之间调节。来自源表征活动的实验结果验证了该设计:24小时的时间稳定性证明,对于电压源,并且对于50 mA的最小电流源,低于1000 ppm。此外,测得的叠加噪声小于-80 dBV,两个源的平均故障间隔时间(MTBF)估计约为2000万小时。淬火检测器功能的改进也通过进一步的实验得到证明。获得的结果证明了所提出的检测机制的有效性,并为进一步研究高温超导电缆的大规模使用铺平了道路。

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