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An FPGA based control unit for synchronization of laser Thomson scattering measurements to plasma events on MAST

机译:基于FPGA的控制单元,用于使Thomson激光散射测量结果与MAST上的等离子体事件同步

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摘要

The power and flexibility of modern Field Programmable Gate Arrays (FPGAs) is now being recognised in many areas of instrumentation and control. The high performance of modern ADCs and the high throughput of FPGAs allow the emulation of many specialised analogue instruments. The functions of heterodyne detection, phase measurements, spectrum analyzers, phase sensitive detectors, counters, etc. can be achieved in relatively simple hardware using an FPGA. The complex filtering functions can be efficiently performed digitally in the FPGA, without recourse to a separate DSP chip. This paper describes the use of a custom off the shelf FPGA board with a collection of custom interface boards to produce a powerful custom trigger system. This has been developed for agile triggering of YAG lasers on MAST. This unit allows various analogue inputs including magnetics data to be processed in real-time and allow Thomson scattering data to be collected at accurate times with respect to randomly occurring MHD phenomena such as neoclassical tearing modes (NTMs). The FPGA allows a 'System On a Chip' architecture in order to perform fast filtering in logic coupled to a dedicated soft processor for real-time fixed latency operations and a second soft processor to handle external communications with the control system for system configuration and reporting of status/archived data. The use of such a generic structure in order to provide a common approach, with reduced software development times, for diverse diagnostic situations will be discussed.
机译:现代现场可编程门阵列(FPGA)的强大功能和灵活性现已在仪表和控制的许多领域得到认可。现代ADC的高性能和FPGA的高吞吐量可以仿真许多专用的模拟仪器。外差检测,相位测量,频谱分析仪,相敏检测器,计数器等功能可以使用FPGA在相对简单的硬件中实现。复杂的滤波功能可在FPGA中以数字方式高效执行,而无需使用单独的DSP芯片。本文介绍了如何使用定制的现成FPGA板和一组定制接口板来产生功能强大的定制触发系统。这是为在MAST上灵活触发YAG激光器而开发的。该单元可以实时处理包括磁学数据在内的各种模拟输入,并可以针对随机发生的MHD现象(例如新古典撕裂模式(NTM))在准确的时间收集Thomson散射数据。 FPGA允许采用“片上系统”架构,以便在逻辑上执行快速过滤,该逻辑耦合到专用软处理器以进行实时固定等待时间操作,第二个软处理器处理与控制系统的外部通信以进行系统配置和报告状态/存档数据。将讨论如何使用这种通用结构为各种诊断情况提供通用的方法,并减少软件开发时间。

著录项

  • 来源
    《Fusion Engineering and Design》 |2010年第4期|P.280-285|共6页
  • 作者

    G.A. Naylor;

  • 作者单位

    EURATOM/UKAEA Fusion Association, Culham Science Centre, Abingdon OX14 3DB, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    FPGA; data acquisition; real-time; thomson scattering;

    机译:FPGA;数据采集​​;即时的;汤姆森散射;

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