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Resistor array infrared projector nonuniformity correction: search for performance improvement Ⅱ

机译:电阻阵列红外投影仪不均匀校正:搜索性能改进Ⅱ

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Research leading towards the continued improvement in resistor array infrared projector nonuniformity correction (NUC) is reported, particularly at low drive levels relevant to thermal imager and FLIR test and evaluation applications. Moire fringes have been successfully compensated, as has the checkerboard effect seen in earlier flood NUC measurements. With these improvements, the residual nonuniformity associated with the random spatial noise has been reduced successfully to the 0.1-0.2% rms level, equivalent to 20-60 mK noise equivalent temperature differences. The random noise is accompanied, however, by a low spatial frequency fixed pattern, currently unexplained but possibly attributable to busbar robbing in the electronic backplane.
机译:报告了导致电阻阵列红外投影仪不均匀性校正(NUC)继续改进的研究,特别是在与热成像仪和FLIR测试和评估应用相关的低驱动水平。 Moire Fringes已成功得到补偿,因为早期洪水NUC测量中的棋盘效应也是如此。 随着这些改进,与随机空间噪声相关的残余不均匀性已成功减少到0.1-0.2%的RMS水平,相当于20-60 mk噪声等效温度差异。 然而,随机噪声伴随着低空间频率固定模式,目前无法解释,但可能归因于电子背板中的母线抢劫。

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