Wolf Alejandro, Pezoa Jorge E, Figueroa Miguel
Electrical Engineering Department, Universidad de Concepción, Edmundo Larenas 219, Concepción 4030000, Chile.
Center for Optics and Photonics, Universidad de Concepción, Avda. Esteban S. Iturra s/n, Concepción 4030000, Chile.
Sensors (Basel). 2016 Jul 19;16(7):1121. doi: 10.3390/s16071121.
Images rendered by uncooled microbolometer-based infrared (IR) cameras are severely degraded by the spatial non-uniformity (NU) noise. The NU noise imposes a fixed-pattern over the true images, and the intensity of the pattern changes with time due to the temperature instability of such cameras. In this paper, we present a novel model and a compensation algorithm for the spatial NU noise and its temperature-dependent variations. The model separates the NU noise into two components: a constant term, which corresponds to a set of NU parameters determining the spatial structure of the noise, and a dynamic term, which scales linearly with the fluctuations of the temperature surrounding the array of microbolometers. We use a black-body radiator and samples of the temperature surrounding the IR array to offline characterize both the constant and the temperature-dependent NU noise parameters. Next, the temperature-dependent variations are estimated online using both a spatially uniform Hammerstein-Wiener estimator and a pixelwise least mean squares (LMS) estimator. We compensate for the NU noise in IR images from two long-wave IR cameras. Results show an excellent NU correction performance and a root mean square error of less than 0.25 ∘ C, when the array's temperature varies by approximately 15 ∘ C.
基于非制冷微测辐射热计的红外(IR)相机所呈现的图像会因空间非均匀性(NU)噪声而严重退化。NU噪声在真实图像上施加了一个固定模式,并且由于此类相机的温度不稳定性,该模式的强度会随时间变化。在本文中,我们提出了一种针对空间NU噪声及其与温度相关变化的新型模型和补偿算法。该模型将NU噪声分为两个分量:一个常数项,它对应于一组确定噪声空间结构的NU参数;以及一个动态项,它与微测辐射热计阵列周围温度的波动呈线性比例关系。我们使用黑体辐射器和红外阵列周围的温度样本离线表征常数和与温度相关的NU噪声参数。接下来,使用空间均匀的哈默斯坦 - 维纳估计器和逐像素最小均方(LMS)估计器在线估计与温度相关的变化。我们对来自两台长波红外相机的红外图像中的NU噪声进行补偿。结果表明,当阵列温度变化约15摄氏度时,具有出色的NU校正性能,均方根误差小于0.25摄氏度。