低灵敏度家用摄像机在恶劣观测条件下探测到的明亮流星和坠落的航天器残余物视频记录处理问题

Pub Date : 2021-01-01 DOI:10.15407/knit2021.06.085
P. Kozak, Y.E. Zlochevskyi, L. Kozak, S. Stariy
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引用次数: 1

摘要

我们提出了在恶劣观测条件下进行的独特明亮火球(火流星或航天器残骸)的单站视频观测结果的运动学和光度处理方法。由于摄像机的灵敏度较低,一方面在摄像机探测器中有大量的星形伪影,另一方面-10.95等的明亮月亮直接在摄像机视场中,因此在所有帧中都完全没有恒星图像。结果表明,采用对整组帧的平均和求和算法以及不同动态强度层的显示,我们可以找到并识别出45颗参考星,其中最弱的参考星为5.4…5.7等。由于在相机视场中,物体轨迹的最接近点对应于最大角速度,因此对观测者可见,并且进行了建模。通过视频处理后的单站检测得到火球的下一个数据。火球坠落时间超过12秒,轨迹角长度超过60°,最大角速度为7.4°/秒。结果表明,在最大接近点的空间体可能损失近32%的初始速度。最大接近点的能见度使我们能够计算出可见辐射点的赤经和赤纬分别为272.0度和-0.8度。火球的亮度在-5.5到-8.5等的范围内变化。所有的计算都不能让我们明确地确定火球是流星体还是宇宙碎片碎片。
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Problems of videorecords processing of bright bolides and falling space vehicle remnants detected with the low-sensitive home video cameras in bad observational conditions
We present the method for kinematic and photometric processing of results of single-station video observations of a unique bright fireball (bolide or space vehicle remnant) carried out in bad observational conditions. Due to the low sensitivity of the video camera, lots of star-shaped artifacts in the camera detector on the one hand, and the bright Moon of -10.95 mag, which was directly in the camera field of view on the other, the star images were completely absent in all the frames. It is demonstrated that using the averaging and summing algorithms applied to the whole set of frames and the display of different dynamic layers of intensity allowed us to find and identify 45 reference stars, the faintest of which were of 5.4…5.7 mag. Due to the visibility of the point of closest approach of the object trajectory to an observer, which corresponds to the maximum angular velocity, in the camera field of view and the performed modeling, we obtained the next data about the fireball from the single-station detection after the video processing. The fireball fall lasted longer than 12 seconds, the angular length of the trajectory exceeded 60 deg, maximum angular velocity was computed as 7.4 deg/sec. It was shown that the space body in the point of maximal approach could lose near 32 percent of its initial velocity. Visibility of the maximal approach point allowed us to calculate the right ascension and declination of the visible radiant as 272.0 and -0.8 deg, respectively. The luminosity of the fireball was varying in the range of -5.5 to -8.5 mag. All the calculations performed did not allow us to unambiguously identify the fireball as a meteoroid or as a cosmic debris fragment.
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