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ATCA Fast Data Acquisition and Processing System for JET Gamma-Ray Cameras Upgrade Diagnostic

机译:用于JET伽马射线摄像机升级诊断的ATCA快速数据采集和处理系统

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Nuclear reaction gamma-ray diagnosis is one of the important techniques used for studying confined fast-ions. The Joint European Torus (JET) gamma-ray camera diagnostic provides information on the spatial distribution of fast ions. The system is currently being upgraded and should allow gamma-ray image measurements in high power deuterium JET pulses, and eventually in deuterium-tritium discharges. In order to fully exploit the diagnostic capabilities it is mandatory to develop a reliable, maintainable, multi-channel spectroscopy data acquisition and real-time processing (DAQP) system, which shares much of the common development for other specific implementation like Gamma-ray spectroscopy. The DAQP system is based on the Advanced Telecommunications Computing Architecture (ATCA) and contains a 6 GFLOPS x86-based control unit and three transient recorder and processing (TRP) modules, to cope with the two arrays of collimators (10 horizontal + 9 vertical lines of sight), interconnected through PCI Express (PCIe) links. Each TRP module features 8 channels of 13 bit resolution sampling at 250 MHz, 4 GByte of local memory and two field programmable gate arrays able to perform complex trigger managing modes and allowing real time analyses (pulse height analyzer and pile-up discrimination), minimizing data storage and transfer issues. The DAQP system aims at overcoming the problem of storing large amount of data during long discharges. A raw/processed mode is being developed where the acquired raw data follows two parallel paths: besides being directly stored in the on-board memory, it is processed and streamed in real-time through PCIe links. This procedure is expected to greatly reduce the amount of data and to give the possibility of allowing continuous operation of the diagnostic. During commissioning and when data validation is required, the 4 GB raw data will be executed on the x86 control unit through a well known algorithm and the result cross checked with the proce-n-nssed data.
机译:核反应伽马射线诊断是用于研究受限快速离子的重要技术之一。联合欧洲环面(JET)伽马射线照相机诊断可提供有关快速离子空间分布的信息。该系统目前正在升级,应允许在高功率氘JET脉冲中,并最终在氘-放电中进行伽马射线图像测量。为了充分利用诊断功能,必须开发可靠,可维护的多通道光谱数据采集和实时处理(DAQP)系统,该系统与其他特定实现(例如伽马射线光谱)有很多共同的发展。 。 DAQP系统基于高级电信计算体系结构(ATCA),包含6个基于GFLOPS x86的控制单元和三个瞬态记录器和处理(TRP)模块,以应对两个准直仪阵列(10条水平+ 9条垂直线)通过PCI Express(PCIe)链接互连。每个TRP模块均具有250个MHz的8个通道的13位分辨率采样,4 GB的本地存储器和两个现场可编程门阵列,能够执行复杂的触发管理模式并允许进行实时分析(脉冲高度分析仪和堆积鉴别),从而将最小化数据存储和传输问题。 DAQP系统旨在克服长时间放电期间存储大量数据的问题。正在开发一种原始/处理模式,其中所获取的原始数据遵循两条并行路径:除了直接存储在板载内存中之外,还通过PCIe链接进行实时处理和流传输。预期该过程将大大减少数据量,并提供允许连续运行诊断程序的可能性。在调试期间和需要数据验证的情况下,将通过众所周知的算法在x86控制单元上执行4 GB的原始数据,并将结果与​​经过处理的数据进行交叉检查。

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