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NI P2P powered multi FPGA real-time data processing on tokamak diagnosis systems

机译:NI P2P支持的托卡马克诊断系统上的多FPGA实时数据处理

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On tokamaks, there are many diagnostics, which need real-time data acquisition and processing to provide useful information for plasma control. Some of the diagnostics required fast processing of multiple very high sampling rate signals. It is often difficult to achieve even with modern mull-core CPUs or GPUs. Moving large amount of data from the digitizers to the system ram will hurt the deterministic performance significantly. FPGA data preprocessing is a better choice when the data large and deterministic performance is required. When the task is too heavy for a single FPGA to implement, transfer large data between FPGAs is also required. On the polarimeter-interferometer diagnostics on J-TEXT, in order to calculate the density profile of the plasma in real-time, multiple chords of line-integrated density must be calculated first. The data acquisition system for the polarimeter-interferometer is equipped with 5 FlexRIO FPGAs, only one is acquiring the reference signal. Density calculation for every probing chord needs the reference signal. So this signal needs to be transferred to other FPGAs with strict real-time requirement. Mismatching a single sample, the result would be completely incorrect. NI P2P streaming allow the FPGA to transfer data without burdening the process. In the paper, the determinism characteristic and other performance of the P2P streaming is tested, and a mechanism to align local digitized samples with P2P streamed samples is presented. These results can be applied to other real-time data processing system that requires multiple FPGAs.
机译:在托卡马克上,有许多诊断程序,需要实时数据采集和处理才能为血浆控制提供有用的信息。一些诊断需要快速处理多个非常高的采样率信号。即使使用现代的多核CPU或GPU,通常也很难实现。将大量数据从数字化仪移动到系统内存将严重损害确定性性能。当需要大数据量和确定性的性能时,FPGA数据预处理是更好的选择。当任务太重而无法实现单个FPGA时,还需要在FPGA之间传输大数据。在J-TEXT的旋光仪干涉仪诊断中,为了实时计算等离子体的密度分布,必须首先计算多个线积分密度的弦。偏振计干涉仪的数据采集系统配备了5个FlexRIO FPGA,只有一个正在采集参考信号。每个探测弦的密度计算需要参考信号。因此,需要将这些信号传输到具有严格实时要求的其他FPGA。与单个样本不匹配时,结果将完全不正确。 NI P2P流传输使FPGA可以在不增加处理负担的情况下传输数据。在本文中,测试了P2P流的确定性特征和其他性能,并提出了一种将本地数字化样本与P2P流样本对齐的机制。这些结果可以应用于需要多个FPGA的其他实时数据处理系统。

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