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Optical Transmission of Thermal Measurements From High Voltage Devices in High Vacuum Conditions

机译:高真空条件下来自高压设备的热测量的光学传输

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The paper describes a system for digitization and optical transmission of thermal measurements on high voltage devices in high vacuum environmental conditions and presents the tests conducted on a prototype. The system has been designed in particular to satisfy such technical requirements as to be mounted on the grounded grid of the SPIDER facility (a 100-keV/60-A particle accelerator) and to withstand frequent fault conditions in which the voltage of the grid transiently rises up to some tens of kV. The system is based on a circuit which samples and transmits the signals to the central acquisition system while preserving the signals and avoiding any electrical links between the high voltage device and the vacuum vessel. Moreover, the system has to be designed so as to minimize the electromagnetic noise affecting the low amplitude signals from the thermocouples (TCs). The circuit design is presented, describing the layout and the electronic components for the acquisition of the TC signals and for the data transmission via optical fiber. When SPIDER is operational, with up to 1-h pulse duration, the circuit is powered by a battery, which is in turn recharged by the energy coming from a photovoltaic cell when SPIDER is not operational and the circuit is not acquiring. Data are digitally transmitted according to RS-232 protocol for easy interfacing to the central data acquisition system. The circuit has been tested to check its proper operation, with particular care devoted to the data transmission and the recharging phase. The results are reported and discussed.
机译:该论文描述了一种用于在高真空环境下对高压设备上的热测量进行数字化和光学传输的系统,并介绍了在原型上进行的测试。该系统经过专门设计,可满足以下技术要求:将其安装在SPIDER设备的接地电网(100-keV / 60-A粒子加速器)上,并承受频繁出现的故障情况,在这种情况下,电网电压会瞬变上升到数十kV。该系统基于一个电路,该电路对信号进行采样并将其传输到中央采集系统,同时保留信号并避免高压设备和真空容器之间的任何电连接。此外,必须对系统进行设计,以使影响热电偶(TC)的低幅度信号的电磁噪声最小。给出了电路设计,描述了用于采集TC信号和通过光纤进行数据传输的布局和电子组件。当SPIDER工作时,脉冲持续时间长达1小时,该电路由电池供电,当SPIDER不工作且电路未采集时,电池又由来自光伏电池的能量再充电。数据根据RS-232协议进行数字传输,以便轻松连接到中央数据采集系统。该电路已经过测试,以检查其正常工作,尤其要注意数据传输和充电阶段。报告结果并进行讨论。

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