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Improved calibration-based non-uniformity correction method for uncooled infrared camera

机译:改进了基于校准的非均匀性校正方法,用于加工红外相机

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With the latest improvements of microbolometer focal plane arrays (FPA), uncooled infrared (IR) cameras are becoming the most widely used devices in thermography, especially in handheld devices. However the influences derived from changing ambient condition and the non-uniform response of the sensors make it more difficult to correct the non-uniformity of uncooled infrared camera. In this paper, based on the infrared radiation characteristic in the TEC-less uncooled infrared camera, a novel model was proposed for calibration-based non-uniformity correction (NUC). In this model, we introduce the FPA temperature, together with the responses of microbolometer under different ambient temperature to calculate the correction parameters. Based on the proposed model, we can work out the correction parameters with the calibration measurements under controlled ambient condition and uniform blackbody. All correction parameters can be determined after the calibration process and then be used to correct the non-uniformity of the infrared camera in real time. This paper presents the detail of the compensation procedure and the performance of the proposed calibration-based non-uniformity correction method. And our method was evaluated on realistic IR images obtained by a 384×288 pixels uncooled long wave infrared (LWIR) camera operated under changed ambient condition. The results show that our method can exclude the influence caused by the changed ambient condition, and ensure that the infrared camera has a stable performance.
机译:随着微速度计焦平面阵列(FPA)的最新改进,未冷却的红外线(IR)摄像机正在成为热成像中最广泛使用的设备,特别是在手持设备中。然而,改变环境条件和传感器的不均匀响应的影响使得更难以校正未冷却红外相机的不均匀性。本文基于TEC的红外辐射特性,提出了一种新型模型,用于基于校准的非均匀性校正(NUC)。在该模型中,我们将FPA温度与微泡计的响应一起引入不同环境温度下的响应,以计算校正参数。基于所提出的模型,我们可以通过受控环境条件和均匀的黑体校准测量来解决校正参数。所有校正参数都可以在校准过程之后确定,然后用于实时校正红外相机的不均匀性。本文提出了补偿程序的细节和所提出的基于校准的非均匀性校正方法的性能。我们的方法在通过在改变的环境条件下操作的384×288像素收缩的长波红外(LWIR)相机获得的现实IR图像上进行评估。结果表明,我们的方法可以排除所改变的环境状况造成的影响,并确保红外线相机具有稳定的性能。

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