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Radiation tolerant power converter controls

机译:耐辐射功率转换器控件

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摘要

The Large Hadron Collider (LHC) at the European Organisation for Nuclear Research (CERN) is the world's most powerful particle collider. The LHC has several thousand magnets, both warm and super-conducting, which are supplied with current by power converters. Each converter is controlled by a purpose-built electronic module called a Function Generator Controller (FGC). The FGC allows remote control of the power converter and forms the central part of a closed-loop control system where the power converter voltage is set, based on the converter output current and magnet-circuit characteristics. Some power converters and FGCs are located in areas which are exposed to beam-induced radiation. There are numerous radiation induced effects, some of which lead to a loss of control of the power converter, having a direct impact upon the accelerator's availability. Following the first long shut down (LS1), the LHC will be able to run with higher intensity beams and higher beam energy. This is expected to lead to significantly increased radiation induced effects in materials close to the accelerator, including the FGC. Recent radiation tests indicate that the current FGC would not be sufficiently reliable. A so-called FGClite is being designed to work reliably in the radiation environment in the post-LS1 era. This paper outlines the concepts of power converter controls for machines such as the LHC, introduces the risks related to radiation and a radiation tolerant project flow. The FGClite is then described, with its key concepts and challenges: aiming for high reliability in a radiation field.
机译:欧洲核研究组织(CERN)的大型强子对撞机(LHC)是世界上最强大的粒子对撞机。大型强子对撞机具有数千个热导和超导磁体,由功率转换器提供电流。每个转换器由专用的电子模块(称为函数发生器控制器(FGC))控制。 FGC允许对功率转换器进行远程控制,并形成一个闭环控制系统的中央部分,该系统根据转换器的输出电流和磁路特性来设置功率转换器的电压。一些功率转换器和FGC位于暴露于束感应辐射的区域。辐射引起的影响很多,其中一些会导致功率转换器失去控制,直接影响加速器的可用性。在第一次长时间关闭(LS1)之后,大型强子对撞机将能够以更高强度的光束和更高的光束能量运行。预计这将导致加速器附近的材料(包括FGC)中的辐射诱发效应显着增加。最近的辐射测试表明,当前的FGC不够可靠。所谓的FGClite被设计为在后LS1时代的辐射环境中可靠地工作。本文概述了LHC等机器的功率转换器控制的概念,介绍了与辐射和辐射耐受项目流有关的风险。然后介绍FGClite及其主要概念和挑战:旨在提高辐射领域的可靠性。

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