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IR-Band Conversion of Target and Background Using Surface Temperature Estimation and Error Compensation for Military IR Sensor Simulation

机译:利用表面温度估计和误差补偿对目标和背景进行红外波段转换用于军事红外传感器仿真

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摘要

Military infrared (IR) imaging systems utilize one or more IR wavelength-bands, among short wavelength IR (SWIR), middle wavelength IR (MWIR), and long wavelength IR (LWIR) band. The IR image wavelength-band conversion which transforms one arbitrary IR wavelength-band image to another IR wavelength-band image is needed for IR signature modeling and image synthesis in the IR systems. However, the IR wavelength-band conversion is very challenging because absorptivity and transmittance of objects and background (atmosphere) are different according to the IR wavelength band and because radiation and reflectance characteristics of the SWIR are very different from the LWIR and MWIR. Therefore, the IR wavelength-band conversion in this paper applies to only IR targets and monotonous backgrounds at a long distance for military purposes. This paper proposes an IR wavelength-band conversion method which transforms one arbitrary IR wavelength-band image to another IR wavelength-band image by using the surface temperature estimation of an object and the error attenuation method for the estimated temperature. The surface temperature of the object is estimated by an approximated Planck’s radiation equation and the error of estimated temperature is corrected by using the slope information of exact radiance along with the approximated one. The corrected surface temperature is used for generating another IR wavelength-band image. The verification of the proposed method is demonstrated through the simulations using actual IR images obtained by thermal equipment.
机译:军用红外(IR)成像系统利用短波长IR(SWIR),中波长IR(MWIR)和长波长IR(LWIR)波段中的一个或多个IR波段。在IR系统中的IR签名建模和图像合成中,需要将一个任意的IR波长带图像转换为另一IR波长带图像的IR图像波长带转换。但是,IR波段转换非常具有挑战性,因为对象和背景(大气)的吸收率和透射率根据IR波段而不同,并且SWIR的辐射和反射特性与LWIR和MWIR完全不同。因此,出于军事目的,本文中的红外波段转换仅适用于远距离的红外目标和单调背景。本文提出了一种红外波段转换方法,该方法利用物体的表面温度估计和估计温度的误差衰减方法将任意一个红外波段图像转换为另一幅红外波段图像。通过近似的普朗克辐射方程估算物体的表面温度,并通过使用精确辐射率的斜率信息以及近似的辐射率信息来校正估算的温度误差。校正后的表面温度用于生成另一个IR波长带图像。通过使用热设备获得的实际红外图像进行仿真,证明了所提出方法的有效性。

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