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Evaluation of the ITER Real-Time Framework for Data Acquisition and Processing from Pulsed Gigasample Digitizers

机译:评估脉冲Gigasample DigiTimizers数据采集和处理的ITER实时框架

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摘要

Plasma diagnostics systems are becoming progressively more advanced. Contemporarily, researchers strive to achieve longer plasma pulses, and therefore, appropriate hardware is required. Analogue-to-Digital Converters are applied for data acquisition in many plasma diagnostic systems. Some diagnostic systems need data acquisition with gigahertz sampling frequency. However, gigasample digitizers working in continuous mode generate an enormous stream of data that requires suitable, high-performance processing systems. This becomes even more complicated and expensive for complex multi-channel systems. Nonetheless, numerous plasma diagnostic systems operate in a pulse mode. Thomson scattering (TS) diagnostics is a good example of a multi-channel system that does not require continuous data acquisition. Taking this into consideration, the authors decided to evaluate the CAEN DT5742 gigasample digitizer as a more cost-effective solution that would utilize the pulsed nature of the TS diagnostic system. The paper presents a complete data acquisition and processing system dedicated for plasma diagnostics based on the ITER real-time framework (RTF). Integration of RTF with real hardware is discussed. The authors of the paper have developed software including RTF function block for the CAEN DT5742 digitizer, example data processing algorithms, data archiving and publishing for plasma control system.
机译:等离子体诊断系统正在变得逐渐更进一步。当代人,研究人员努力实现更长的等离子体脉冲,因此,需要适当的硬件。模拟到数字转换器用于许多等离子体诊断系统中的数据采集。一些诊断系统需要使用Gigahertz采样频率进行数据采集。然而,在连续模式下工作的Gigasample数字剂生成巨大的数据流,需要合适的高性能处理系统。对于复杂的多通道系统,这变得更加复杂和昂贵。尽管如此,许多等离子体诊断系统以脉冲模式操作。汤姆森散射(TS)诊断是一个不需要连续数据采集的多通道系统的一个很好的例子。考虑到这一点,作者决定评估CAEN DT5742 Gigasample数字转换器作为一种更具成本效益的解决方案,可以利用TS诊断系统的脉冲性质。本文介绍了基于迭代实时框架(RTF)的等离子体诊断的完整数据采集和处理系统。讨论了RTF与实际硬件的集成。本文的作者开发了CAEN DT5742数字转换器,示例性数据处理算法,等离子控制系统的数据归档和发布的软件。

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