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Self-adaptive sampling rate data acquisition in JET#8217;s correlation reflectometer

机译:JET相关反射仪中的自适应采样率数据采集

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摘要

Data acquisition systems with self-adaptive sampling rate capabilities have been proposed as a solution to reduce the shear amount of data collected in every discharge of present fusion devices. This paper discusses the design of such a system for its use in the KG8B correlation reflectometer at JET. The system, which is based on the ITMS platform, continuously adapts the sample rate during the acquisition depending on the signal bandwidth. Data are acquired continuously at the expected maximum sample rate and transferred to a memory buffer in the host processor. Thereafter the rest of the process is based on software. Data are read from the memory buffer in blocks and for each block an intelligent decimation algorithm is applied. The decimation algorithm determines the signal bandwidth for each block in order to choose the optimum sample rate for that block, and from there the decimation factor to be used. Memory buffers are used to adapt the throughput of the three main software modules _data acquisition, processing, and storage_ following a typical producer-consumer architecture. The system optimizes the amount of data collected while maintaining the same information. Design issues are discussed and results of performance evaluation are presented.
机译:已经提出了具有自适应采样率能力的数据采集系统作为一种解决方案,以减少当前融合设备每次放电中收集的数据的剪切量。本文讨论了在JET的KG8B相关反射仪中使用的这种系统的设计。该系统基于ITMS平台,在采集过程中会根据信号带宽不断调整采样率。数据以预期的最大采样率连续获取,并传输到主机处理器中的内存缓冲区。此后,其余过程将基于软件。从内存缓冲区中以块为单位读取数据,并为每个块应用智能抽取算法。抽取算法确定每个块的信号带宽,以便为该块选择最佳采样率,然后从中使用抽取因子。内存缓冲区用于按照典型的生产者-消费者体系结构调整三个主要软件模块的吞吐量,即数据采集,处理和存储。该系统在保持相同信息的同时优化了收集的数据量。讨论了设计问题,并提出了性能评估的结果。

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