Zhou Dabiao, Wang Dejiang, Huo Lijun, Liu Rang, Jia Ping
Opt Express. 2017 Jun 26;25(13):14210-14226. doi: 10.1364/OE.25.014210.
Images acquired by airborne infrared search and track (IRST) systems are often characterized by nonuniform noise. In this paper, a scene-based nonuniformity correction method for infrared focal-plane arrays (FPAs) is proposed based on the constant statistics of the received radiation ratios of adjacent pixels. The gain of each pixel is computed recursively based on the ratios between adjacent pixels, which are estimated through a median operation. Then, an elaborate mathematical model describing the error propagation, derived from random noise and the recursive calculation procedure, is established. The proposed method maintains the characteristics of traditional methods in calibrating the whole electro-optics chain, in compensating for temporal drifts, and in not preserving the radiometric accuracy of the system. Moreover, the proposed method is robust since the frame number is the only variant, and is suitable for real-time applications owing to its low computational complexity and simplicity of implementation. The experimental results, on different scenes from a proof-of-concept point target detection system with a long-wave Sofradir FPA, demonstrate the compelling performance of the proposed method.
机载红外搜索与跟踪(IRST)系统获取的图像通常具有非均匀噪声的特征。本文基于相邻像素接收辐射比的恒定统计特性,提出了一种用于红外焦平面阵列(FPA)的基于场景的非均匀性校正方法。通过中值运算估计相邻像素之间的比率,基于此递归计算每个像素的增益。然后,建立了一个详细的数学模型来描述由随机噪声和递归计算过程引起的误差传播。该方法在校准整个电光链、补偿时间漂移以及不保持系统辐射精度方面保持了传统方法的特点。此外,由于帧数是唯一的变量,该方法具有鲁棒性,并且由于其低计算复杂度和实现简单性,适用于实时应用。在使用长波Sofradir FPA的概念验证点目标检测系统的不同场景上的实验结果,证明了该方法具有令人信服的性能。