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首页> 外文期刊>IEEE Transactions on Nuclear Science >Thermal Study of the Ironless Inductive Position Sensors Installed on the LHC Collimators
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Thermal Study of the Ironless Inductive Position Sensors Installed on the LHC Collimators

机译:安装在LHC准直仪上的无铁感应式位置传感器的热研究

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摘要

The safe operation of the European Organization for Nuclear Research Large Hadron Collider relies on a complex system for equipment protection. An essential part of machine protection is the collimation system since it is used to protect the equipment from beam losses. This is achieved by using two jaws to intercept the particles making up the beam halo. Since the jaws are in close proximity to the beam, they must be positioned with micrometer precision from it. An ironless inductive position sensor (I2PS) is a relatively new linear position sensor used to measure the distance of the jaws with respect to the beam. During the operation, it is noted that the position read by the I2PS could be affected by temperature variation causing position-reading errors. This paper presents an experimental study conducted on the I2PS to determine the relationship between the position read by this transducer and the ambient temperature. Furthermore, this paper aims at determining the impact of the temperature changes in the collimator body, on which the I2PS is installed, and the position read by the sensor. The results show that the uneven thermal distribution along the body of the sensor leads to high position readings error. These results also show that, depending on the moving coil position, the sensor behaves differently, and hence, it is very difficult to compensate for the effect. Finally, this paper presents the results of a possible modification tested on the same setup to reduce the thermal effects.
机译:欧洲核研究组织大型强子对撞机的安全运行依赖于复杂的设备保护系统。准直系统是机器保护的重要组成部分,因为它用于保护设备免受光束损失。这是通过使用两个夹爪截取构成光束晕的粒子来实现的。由于钳口紧靠梁,因此必须以千分尺精度对其进行定位。无铁感应式位置传感器(I2PS)是一种相对较新的线性位置传感器,用于测量钳口相对于梁的距离。在操作过程中,请注意,I2PS读取的位置可能会受到温度变化的影响,从而导致位置读取错误。本文介绍了对I2PS进行的实验研究,以确定此传感器读取的位置与环境温度之间的关系。此外,本文旨在确定安装I2PS的准直仪主体中温度变化的影响,以及传感器读取的位置。结果表明,沿着传感器主体的不均匀热分布会导致较高的位置读数误差。这些结果还表明,根据动圈位置的不同,传感器的行为也有所不同,因此很难补偿这种影响。最后,本文介绍了为减少热效应而在同一设置上测试的可能修改结果。

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