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Infrared simulation and performance validation of pinhole and 4-bar collimator targets for static performance evaluation of thermal imaging systems

机译:针孔静态仿真和4杆准直器静态成像系统静态性能评估的红外仿真和性能验证

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The minimum resolvable temperature difference (MRTD) and minimum detectable temperature difference (MDTD) are widely accepted static performance test parameters that best describe the field performance of thermal imaging systems. MRTD test is measured by determining the minimum temperature difference between the 4-bar target and the background required to resolve the thermal image of the bars by an observer. On the other hand, MDTD test is measured by determining the minimum temperature difference between the target and the background, which is required to detect the target from the thermal image. Different temperature differences between the target and the background with different target spatial dimensions were used while conducting both MRTD and MDTD measurements using collimator test systems. In this study, to evaluate the field performance of various thermal imaging systems, MRTD and MDTD tests were applied. Then, infrared simulations of pinhole and 4-bar collimator static test system targets were described based on the electro-optical parameters of unit under test (UUT) including detector resolution, system SiTF (Signal Transfer Function), system MTF (Modulation Transfer Function) and total optical transmission. With these inputs, the infrared simulation images of pinhole and 4-bar targets, which have adjustable temperature difference and different spatial frequency, were obtained in MATLAB environment. Then, the infrared simulations of pinhole and 4-bar target images were verified with thermal imaging system.
机译:最小可解变温差(MRTD)和最小可检测温度差(MDTD)是广泛接受的静态性能测试参数,最能描述热成像系统的现场性能。通过确定4BAR目标和检测器解析杆的热图像所需的背景之间的最小温度差来测量MRTD测试。另一方面,通过确定目标和背景之间的最小温度差来测量MDTD测试,这是从热图像中检测目标所必需的。使用准直器测试系统进行MRTD和MDTD测量的同时使用目标和具有不同目标空间尺寸的不同温度差异。在该研究中,为了评估各种热成像系统的场性能,施加MRTD和MDTD测试。然后,基于在包括检测器分辨率(Syste SITF(信号传递函数),系统MTF(调制传递函数)的单元(SITF)(SONY)(SONACE TRANSIC FOR)(调制传递函数)(SONG SONT FO)(System Tranction)(Syste)MTF(调制传递函数))的电光参数描述了针孔和4杆准直器静态测试系统目标的红外模拟。和总光传输。利用这些输入,在Matlab环境中获得了具有可调节温差和不同空间频率的针孔和4bar目标的红外模拟图像。然后,用热成像系统验证针孔和4BAR目标图像的红外模拟。

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