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Multilevel Thresholding Technique for Contrast Enhancement in Thermal Images to Facilitate Accurate Image Segmentation

机译:多级阈值技术可增强热图像的对比度,以促进精确的图像分割

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The most challenging task in InfraRed Thermography based condition monitoring of electrical equipment lies in the accurate detection of the anomaly. It necessitates an efficient preprocessing technique for increasing the contrast between the background and the anomaly regions in thermographs. In this paper, an efficient multi-level thresholding based enhancement technique is proposed for highlighting the anomaly region from the background. In contrast to the two levels in binary enhancement, n levels are determined based on the histogram bins. Enhanced intensity is calculated based on the range of the level rather than selecting randomly. Strength of the proposed technique is evident in its ability to detect the true edges corresponding to the anomaly. Also the anomaly region is accurately detected to its true size which in turn resulted in the precise estimation of the real time temperature. The error in temperature is approximately 0.5 at an emissivity of 0.7. The proposed technique can be adapted irrespective of thermal profiling of thermographs. However the intensity range must be chosen appropriately. Relationship between emissivity and error in temperature is also provided at the room temperature
机译:在基于红外热成像的电气设备状态监测中,最具挑战性的任务在于对异常的准确检测。它需要一种有效的预处理技术来增加热像仪中背景和异常区域之间的对比度。本文提出了一种有效的基于多级阈值的增强技术,用于从背景中突出显示异常区域。与二进制增强中的两个级别相反,基于直方图块确定n个级别。增强强度是根据级别的范围而不是随机选择来计算的。所提出的技术的优势在于其检测与异常相对应的真实边缘的能力。而且,异常区域被精确地检测到其真实大小,这进而导致对实时温度的精确估计。在0.7的发射率下,温度误差约为0.5。所提出的技术可以适用,而与热像仪的热分析无关。然而,强度范围必须适当地选择。在室温下也提供了发射率和温度误差之间的关系

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