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A high accuracy 22 bit sigma-delta converter for digital regulation of super-conducting magnet currents

机译:高精度22位sigma-delta转换器,用于数字调节超导磁体电流

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The design of the latest CERN particle accelerator for high energy particle physics research, the Large Hadron Collider (LHC), has been underway for some years. The new machine requires stronger magnetic fields which necessitates the use of super-conducting magnets around most of the 27km ring tunnel. The powering of these magnets, with currents up to 13 kA, presents new challenges in precision, which can be summarised as an improvement in setting and regulation of certain currents to the part per million (ppm) level. This represents approximately a factor of ten improvement over present analogue methods. This paper will concentrate on the design and performance of the analogue to digital converter (ADC), which is the key element in the digital regulation loops employed in each magnet power converter.
机译:最新的用于高能粒子物理研究的CERN粒子加速器,大型强子对撞机(LHC)的设计已经进行了数年。新机器需要更强的磁场,因此必须在27公里环形隧道的大部分周围使用超导磁体。电流高达13 kA的这些磁体的供电在精度方面提出了新的挑战,可以概括为将某些电流的设置和调节提高到百万分之一(ppm)的水平。与目前的模拟方法相比,这大约代表了十倍的改进。本文将重点介绍模数转换器(ADC)的设计和性能,该模数转换器是每个磁体功率转换器中采用的数字调节环路中的关键要素。

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