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A reconsideration of the noise equivalent power and the data analysis procedure for the infrared imaging video bolometers

机译:对红外成像视频测辐射热仪的噪声等效功率和数据分析程序的重新考虑

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The infrared imaging video bolometer (IRVB) used for measurement of the two-dimensional (2D) radiation profiles from the Large Helical Device has been significantly upgraded recently to improve its signal to noise ratio, sensitivity, and calibration, which ultimately provides quantitative measurements of the radiation from the plasma. The reliability of the quantified data needs to be established by various checks. The noise estimates also need to be revised and more realistic values need to be established. It is shown that the 2D heat diffusion equation can be used for estimating the power falling on the IRVB foil, even with a significant amount of spatial variation in the thermal diffusivity across the area of the platinum foil found experimentally during foil calibration. The equation for the noise equivalent power density (NEPD) is re-derived to include the errors in the measurement of the thermophysical and the optical properties of the IRVB foil. The theoretical value estimated using this newly derived equation matches closely, within 5.5%, with the mean experimental value. The change in the contribution of each error term of the NEPD equation with rising foil temperature is also studied and the blackbody term is found to dominate the other terms at elevated operating temperatures. The IRVB foil is also sensitive to the charge exchange (CX) neutrals escaping from the plasma. The CX neutral contribution is estimated to be marginally higher than the noise equivalent power (NEP) of the IRVB. It is also established that the radiation measured by the IRVB originates from the impurity line radiation from the plasma and not from the heated divertor tiles. The change in the power density due to noise reduction measures such as data smoothing and averaging is found to be comparable to the IRVB NEPD. The precautions that need to be considered during background subtraction are also discussed with experimental illustrations. Finally, the analysis algorithm with all the i- provements is validated and found to reproduce the input power well within 10% accuracy. This article answers many fundamental questions relevant to the IRVB and illustrates the care to be exercised while processing the IRVB data.
机译:红外成像视频辐射热测量仪(IRVB)用于测量大型螺旋设备的二维(2D)辐射剖面,最近已进行了重大升级,以改善其信噪比,灵敏度和校准,最终可对来自等离子体的辐射。量化数据的可靠性需要通过各种检查来确定。噪声估计也需要修改,并且需要建立更实际的值。结果表明,二维热扩散方程可用于估算IRVB箔片上的功率,即使在箔片校准过程中实验发现的整个铂箔区域的热扩散率存在很大的空间变化。重新推导了噪声等效功率密度(NEPD)的公式,以包括IRVB箔片的热物理性质和光学性质的测量误差。使用这个新推导的方程式估算的理论值与平均实验值非常接近,在5.5%之内。还研究了NEPD方程的每个误差项对箔温度升高的贡献的变化,发现在升高的工作温度下,黑体项占主导地位。 IRVB箔对从等离子体中逸出的电荷交换(CX)中性点也很敏感。 CX中性点贡献估计略高于IRVB的噪声等效功率(NEP)。还可以确定,IRVB测量的辐射来自等离子体的杂质线辐射,而不是来自加热的偏滤器瓦。人们发现,由于降低噪声的措施(例如数据平滑和平均)而导致的功率密度变化与IRVB NEPD相当。还通过实验插图讨论了在背景减除过程中需要考虑的预防措施。最终,对具有所有证明的分析算法进行了验证,发现它们可以在10%的精度内很好地再现输入功率。本文回答了许多与IRVB相关的基本问题,并说明了在处理IRVB数据时应谨慎行事。

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