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Analysis of space targets detection ability of spaceborne infrared detection system

机译:空间靶标检测能力分析空间红外检测系统

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The real-time detection and surveillance of space targets are primary functions of space surveillance system. On account of abundant infrared radiation of the electronic and electromechanical equipments inside satellites, spacecraft, etc., the infrared characteristics of space targets will be very obvious in the cold astrospace background. Therefore, using spaceborne IR detection system is very beneficial to space object detection, especially in the absence of any significant atmosphere. The key characteristic of spaceborne IR system is passive measurement principle, but not requiring direct sun illumination. This is very proper for the purposes of space control requirements. This paper has theoretically determined the feasibility of the spaceborne IR detection system in using infrared radiation characteristics of a space object and IR imaging sensor to locate and recognize object. According to the requirements of an IR imaging system to modulation contrast, signal-to-noise ratio (SNR) and image size of space object, the paper has discussed infrared radiation characteristics of space object and background, the structure of the system and primary factors which can affect operation range of the system. Results indicate that such parameters as principal design wavelength, spectral band and pixel size of receiving sensor, focal length and aperture diameter of receiving optics system and so on can determine scale, capacity and practicability of detection system. With a 150mm aperture, 800mm focal distance and 13μm IR CCD imaging pixel dimension, the system could detect a space object with size of 10 m and distance of 200 km. The imaging point of this object would occupy 3 x 3 pixels point.
机译:空间目标的实时检测和监视是太空监控系统的主要功能。由于卫星,航天器等的电子和机电设备的丰富红外辐射,空间目标的红外特性在冷空星空间背景下非常明显。因此,使用空间载体IR检测系统对空间对象检测非常有益,特别是在没有任何显着的气氛中。星载IR系统的关键特征是被动测量原理,但不需要直接阳光照明。这对于空间控制要求的目的非常适合。本文理解地确定了星载IR检测系统在使用空间对象和IR成像传感器的红外辐射特性来定位和识别对象的可行性。根据IR成像系统的要求调制对比,信噪比(SNR)和空间对象的图像尺寸,本文讨论了空间对象和背景的红外辐射特性,系统的结构和主要因素这会影响系统的操作范围。结果表明,接收光学系统的接收传感器的主设计波长,光谱带和像素尺寸等参数可以确定检测系统的比例,容量和实用性。通过150mm光圈,800mm焦距和13μm的IR CCD成像像素尺寸,系统可以检测尺寸为10米的空间对象,距离为200公里。该对象的成像点将占用3 x 3像素点。

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