论文标题
前端控制系统和V-Angra实验的精确阈值配置
Front-end control system and precise threshold configuration of the v-Angra experiment
论文作者
论文摘要
V-Angra实验旨在估算从Angra II核反应堆中脱出的抗肿瘤颗粒的通量。这种通量与裂变过程中释放的热功率成正比,因此可以用于推断一定时期内燃烧的燃料量。为此,V-Angra的合作开发了一个抗神经剂检测器和一个完整的采集系统,以读取和存储其传感器生成的信号。整个检测系统已安装在核反应堆圆顶旁边的集装箱实验室内,该实验室位于Angra II站点的限制区域中。该系统应该独立工作几年,以收集足够的数据,以便可以验证实验。检测器的读出电子及其环境条件是实验的关键部分,它们应自主工作,并受到远程控制和监控。此外,阈值配置是实验的一个中心问题,因为抗神经颗粒在检测器中产生低能信号,这对于所有检测器通道仔细调整它是必要的,以使系统能够检测到与单个光子产生的信号低。为此,开发了一个嵌入式系统,并将其集成到Angra II站点的容器中安装的检测设备,现在正在运行且可用于V-Angra协作。本文旨在描述提议的嵌入式系统,并介绍其调试阶段获得的结果。
The v-Angra experiment aims to estimate the flux of antineutrino particles coming out from the Angra II nuclear reactor. Such flux is proportional to the thermal power released in the fission process and therefore can be used to infer the quantity of fuel that has been burned during a certain period. To do so, the v-Angra Collaboration has developed an antineutrino detector and a complete acquisition system to readout and store the signals generated by its sensors. The entire detection system has been installed inside a container laboratory placed beside the dome of the nuclear reactor, in a restricted zone of the Angra II site. The system is supposed to work standalone for a few years in order to collect enough data so that the experiment can be validated. The detector's readout electronics and its environmental conditions are crucial parts of the experiment and they should work autonomously and be controlled and monitored remotely. Additionally, threshold configuration is a central issue of the experiment since antineutrino particles produce low energy signals in the detector, being necessary to carefully adjust it for all the detector channels in order to make the system capable of detecting signals as low as those generated by single photons. To this end, an embedded system was developed and integrated to the detection apparatus installed in the container at the Angra II site and is now operational and accessible to the v-Angra Collaboration. This article aims at describing the proposed embedded system and presenting the results obtained during its commissioning phase.