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基于新型现场可编程门阵列的面向图像的采集与实时处理技术应用于面向等离子体部件的热监测。

New field programmable gate array-based image-oriented acquisition and real-time processing applied to plasma facing component thermal monitoring.

作者信息

Martin V, Dunand G, Moncada V, Jouve M, Travere J-M

机构信息

Pulsar Team-Project, INRIA Sophia Antipolis, Sophia Antipolis F-06902, France.

出版信息

Rev Sci Instrum. 2010 Oct;81(10):10E113. doi: 10.1063/1.3475787.

Abstract

During operation of present fusion devices, the plasma facing components (PFCs) are exposed to high heat fluxes. Understanding and preventing overheating of these components during long pulse discharges is a crucial safety issue for future devices like ITER. Infrared digital cameras interfaced with complex optical systems have become a routine diagnostic to measure surface temperatures in many magnetic fusion devices. Due to the complexity of the observed scenes and the large amount of data produced, the use of high computational performance hardware for real-time image processing is then mandatory to avoid PFC damages. At Tore Supra, we have recently made a major upgrade of our real-time infrared image acquisition and processing board by the use of a new field programmable gate array (FPGA) optimized for image processing. This paper describes the new possibilities offered by this board in terms of image calibration and image interpretation (abnormal thermal events detection) compared to the previous system.

摘要

在当前聚变装置运行期间,面对等离子体的部件(PFCs)会受到高热通量的作用。对于像国际热核聚变实验堆(ITER)这样的未来装置而言,了解并防止这些部件在长脉冲放电期间过热是一个至关重要的安全问题。与复杂光学系统相连的红外数码相机已成为许多磁约束聚变装置中测量表面温度的常规诊断工具。由于观测场景的复杂性以及产生的大量数据,必须使用具有高计算性能的硬件进行实时图像处理,以避免PFCs受损。在托雷·超环面装置(Tore Supra)中,我们最近通过使用一款针对图像处理进行优化的新型现场可编程门阵列(FPGA),对我们的实时红外图像采集与处理板进行了重大升级。本文描述了与先前系统相比,该处理板在图像校准和图像解读(异常热事件检测)方面所提供的新可能性。

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