【24h】

Non-uniformity Correction Technology of Infrared Thermal Imager without Shutter Based on Noise Template

机译:基于噪声模板的无快门红外热像仪非均匀性校正技术

获取原文

摘要

Infrared thermal imager is widely used as target detection, search and tracking system due to its super night visioncapability. The traditional thermal imager will cause column noise and serious image degradation due to temperaturechange, which will affect the observation effect. Therefore, it is necessary to carry out non-uniformity correction by thebaffle (or shutter). However, in the process of shutter correction, there will be a short time for the search and trackingequipment to fail to work, which is easy to cause target loss. At present, all search and tracking systems require theinstallation of a continuously working infrared thermal imager without shutter. In order to realize the non-uniformitycorrection technology of infrared thermal imaging without shutter, a fast correction method for image gradient optimizationbased on noise template is proposed in this paper. Due to the special manufacturing process of the detector, when thetemperature of the detector changes, the output image will produce vertical stripes with regular shapes. The noise patternsobtained at different temperatures are linearly related. Therefore, there is a noise model M, which makes the noise matrixat any temperature can be expressed as the product of M and a constant k (k is related to the detector Temperature K). Thefringe noise of the image is quantified by detecting the sum of the absolute values of the transverse gradients of the image,and the non-uniformity correction without shutter is realized by adjusting the parameters so that the sum of the absolutevalues of the transverse gradients is minimized. This method can not only compensate temperature drift, but also replacethe shutter to realize one-point correction, which reduces the power consumption of the whole machine and improves thereliability. There is no need for complicated calibration work in High and low temperature test chamber. It is not evennecessary to record the current detector working temperature in real time for calculation. This method is simple in structureand easy to implement. The practical application proves that the infrared thermal imaging system has clear imaging. Theeffect is excellent.
机译:红外热像仪具有超强的夜视功能,被广泛用作目标检测,搜索和跟踪系统 能力。传统的热成像仪会因温度而引起列噪声和严重的图像劣化 变化,这会影响观察效果。因此,有必要通过 挡板(或百叶窗)。但是,在快门校正过程中,搜索和跟踪的时间会很短 设备无法正常工作,很容易造成目标损失。目前,所有搜索和跟踪系统都需要 安装不带快门的连续工作的红外热像仪。为了实现不均匀 无需快门的红外热成像校正技术,一种用于图像梯度优化的快速校正方法 本文提出了一种基于噪声模板的方法。由于探测器的特殊制造工艺, 检测器的温度变化时,输出图像将产生规则形状的垂直条纹。噪音模式 在不同温度下获得的线性相关。因此,存在一个噪声模型M,它使噪声矩阵 在任何温度下,都可以表示为M与常数k的乘积(k与检测器温度K有关)。这 通过检测图像横向梯度的绝对值之和来量化图像的边缘噪声, 通过调整参数使绝对值之和达到无快门的不均匀校正。 横向梯度的值被最小化。该方法不仅可以补偿温度漂移,而且可以替代 百叶窗实现单点校正,减少了整机的功耗,提高了 可靠性。无需在高温和低温测试室中进行复杂的校准工作。甚至没有 需要实时记录当前检测器的工作温度以进行计算。这种方法结构简单 且易于实施。实际应用证明红外热成像系统成像清晰。这 效果极好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号