高级检索

非结构化环境下镜面物体识别和法向估计技术

Mirror object recognition and normal estimation in unstructured environment

  • 摘要: 指向测量贯穿于卫星装配、集成、测试(AIT)各个阶段,指向精度直接影响卫星在轨服役性能。随着航天领域高质量、高效益、高效率发展和商业航天规模化、多元化制造模式的背景下,卫星制造周期越来越短、制造质量越来越高。传统的多经纬仪人工布站人工准直的方法存在测量效率低、测量精度低、劳动强度较大、自动化程度低等不足,已经无法满足航天领域的发展趋势。亟需研制星上设备安装指向高精度自动化指向测量系统,该系统的难点在于概略准直过程中非结构化环境下(如低照度、低对比度等)镜面物体识别和法向估计。提出一种基于反射式的镜面物体识别和法向估计系统和方法,利用指向测量合作靶标立方镜的镜面反射特性,基于镜面反射原理、单应性矩阵参数估计、通过反射幕布上的反射点坐标精确估计出立方镜的法向信息,最终实验验证提出方法的有效性和精度。

     

    Abstract: Pointing measurement runs through each stage of satellite assembly, integration and test (AIT), and pointing accuracy directly affects the in-orbit service performance of satellite. With the development of high quality, high benefit and high efficiency in the space field and the large-scale and diversified manufacturing mode of commercial space, the satellite manufacturing cycle is getting shorter and shorter, and the manufacturing quality is getting higher and higher. The traditional multi-theodolite human industrial station manual coligning method has the shortcomings of low measurement efficiency, low measurement accuracy, high labor intensity and low degree of automation, which can not meet the development trend of aerospace field. It is urgent to develop an automatic pointing measurement system with high precision for on-board equipment. The difficulty of this system lies in the recognition and normal estimation of mirror objects in unstructured environment (such as low illumination, low contrast, etc.) during the rough collimation process. In this paper, a system and method for recognition and normal estimation of mirror objects based on reflection are presented. Based on the specular reflection characteristics of the target cube mirror, the normal information of the cube mirror is accurately estimated based on the specular reflection principle, the parameter estimation of the homography matrix, and the coordinates of the reflection points on the reflection screen. The effectiveness and accuracy of the proposed method are verified by experiments.

     

/

返回文章
返回