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Infrared Thermography Approach for Effective Shielding Area of Field Smoke Based on Background Subtraction and Transmittance Interpolation

机译:基于背景减法和透射率插值的红外热像仪有效屏蔽现场烟雾的方法

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摘要

Effective shielding area is a crucial indicator for the evaluation of the infrared smoke-obscuring effectiveness on the battlefield. The conventional methods for assessing the shielding area of the smoke screen are time-consuming and labor intensive, in addition to lacking precision. Therefore, an efficient and convincing technique for testing the effective shielding area of the smoke screen has great potential benefits in the smoke screen applications in the field trial. In this study, a thermal infrared sensor with a mid-wavelength infrared (MWIR) range of 3 to 5 μm was first used to capture the target scene images through clear as well as obscuring smoke, at regular intervals. The background subtraction in motion detection was then applied to obtain the contour of the smoke cloud at each frame. The smoke transmittance at each pixel within the smoke contour was interpolated based on the data that was collected from the image. Finally, the smoke effective shielding area was calculated, based on the accumulation of the effective shielding pixel points. One advantage of this approach is that it utilizes only one thermal infrared sensor without any other additional equipment in the field trial, which significantly contributes to the efficiency and its convenience. Experiments have been carried out to demonstrate that this approach can determine the effective shielding area of the field infrared smoke both practically and efficiently.
机译:有效的屏蔽面积是评估战场上红外烟雾遮挡效果的关键指标。除了缺乏精度之外,用于评估烟幕的屏蔽区域的常规方法是费时且费力的。因此,一种有效且令人信服的测试烟幕有效屏蔽区域的技术在现场试验的烟幕应用中具有巨大的潜在优势。在这项研究中,首先使用中波长红外(MWIR)范围为3至5μm的热红外传感器,以规则间隔通过清晰和遮蔽烟雾来捕获目标场景图像。然后应用运动检测中的背景减法来获得每一帧烟雾云的轮廓。根据从图像中收集的数据,对烟雾轮廓内每个像素的烟雾透射率进行插值。最后,根据有效屏蔽像素点的累积,计算出烟雾有效屏蔽区域。这种方法的一个优点是,在现场试验中,它仅使用一个热红外传感器,而没有任何其他其他设备,因此大大提高了效率和便利性。实验表明,该方法可以实际有效地确定红外烟雾的有效屏蔽区域。

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