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Overview of a FPGA-based nuclear instrumentation dedicated to primary activity measurements

机译:专用于主要活动测量的基于FPGA的核仪器概述

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In National Metrology Institutes like LNE-LNHB, renewal and improvement of the instrumentation is an important task. Nowadays, the current trend is to adopt digital boards, which present numerous advantages over the standard electronics. The feasibility of an on-line fulfillment of nuclear-instrumentation functionalities using a commercial FPGA-based (Field-Programmable Gate Array) board has been validated in the case of TDCR primary measurements (Triple to Double Coincidence Ratio method based on liquid scintillation). The new applications presented in this paper have been included to allow either an on-line processing of the information or a raw-data acquisition for an off-line treatment. Developed as a complementary tool for TDCR counting, a time-to-digital converter specifically designed for this technique has been added. In addition, the description is given of a spectrometry channel based on the connection between conventional shaping amplifiers and the analog-to-digital converter (ADC) input available on the same digital board. First results are presented in the case of α- and γ-counting related to, respectively, the defined solid angle and well-type NaI(Tl) primary activity techniques. The combination of two different channels (liquid scintillation and γ-spectrometry) implementing the live-time anticoincidence processing is also described for the application of the 4πΒ-γ coincidence method. The need for an optimized coupling between the analog chain and the ADC stage is emphasized. The straight processing of the signals delivered by the preamplifier connected to a HPGe detector is also presented along with the first development of digital filtering.
机译:在像LNE-LNHB这样的国家计量学院中,仪器的更新和改进是一项重要任务。如今,当前的趋势是采用数字板,与标准电子产品相比,其具有许多优势。在TDCR初次测量(基于液体闪烁的三重对重比法)的情况下,已经验证了使用基于商业FPGA的(现场可编程门阵列)板在线实现核仪器功能的可行性。本文中介绍的新应用程序已被包括在内,以允许对信息进行在线处理或对离线处理进行原始数据采集。作为用于TDCR计数的补充工具而开发的,已添加了专门为此技术设计的时间数字转换器。另外,基于常规整形放大器与同一数字板上可用的模数转换器(ADC)输入之间的连接,给出了光谱通道的描述。在分别涉及定义的立体角和井式NaI(Tl)主要活性技术的α计数和γ计数的情况下,给出了第一个结果。对于4πimplementing-γ重合方法的应用,还描述了实现实时反符合处理的两个不同通道(液体闪烁和γ光谱法)的组合。强调了对模拟链和ADC级之间的优化耦合的需求。与数字滤波的第一个发展一起,还介绍了与HPGe检测器相连的前置放大器传递的信号的直接处理。

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