High precision space debris laser ranging with 4.2 W double-pulse picosecond laser at 1 kHz in 532nm

Optik ◽  
2019 ◽  
Vol 179 ◽  
pp. 691-699 ◽  
Author(s):  
Zhongping Zhang ◽  
Haifeng Zhang ◽  
MingLiang Long ◽  
Huarong Deng ◽  
Zhibo Wu ◽  
...  
2021 ◽  
Vol 11 (21) ◽  
pp. 10080
Author(s):  
Haifeng Zhang ◽  
Mingliang Long ◽  
Huarong Deng ◽  
Shaoyu Cheng ◽  
Zhibo Wu ◽  
...  

Debris laser ranging (DLR) is receiving considerable attention as an accurate and effective method of determining and predicting the orbits of space debris. This paper reports some technologies of DLR, such as the high pulse repetition frequency (PRF) laser pulse, large-aperture telescope, telescope array, multi-static stations receiving signals. DLR with a picosecond laser at the Shanghai Astronomical Observatory is also presented. A few hundred laps of space debris laser-ranging measurements have been made. A double-pulse picosecond laser with an average power of 4.2 W, a PRF of 1 kHz, and a wavelength of 532 nm has been implemented successfully in DLR, it’s the first time that DLR technology has reached a ranging precision at the sub-decimeter level. In addition, the characteristics of the picosecond-pulse-width laser transmission with the advantages of transmission in laser ranging were analyzed. With a mode of the pulse-burst picosecond laser having high average power, the DLR system has tracked small debris with a radar cross-section (RCS) of 0.91 m2 at a ranging distance up to 1726.8 km, corresponding to an RCS of 0.1 m2 at a distance of 1000 km. These works are expected to provide new technologies to further improve the performance of DLR.


2021 ◽  
Vol 41 (6) ◽  
pp. 0614001
Author(s):  
龙明亮 Long Mingliang ◽  
邓华荣 Deng Huarong ◽  
张海峰 Zhang Haifeng ◽  
吴志波 Wu Zhibo ◽  
张忠萍 Zhang Zhongping ◽  
...  

2019 ◽  
Vol 64 (17) ◽  
pp. 1761-1762 ◽  
Author(s):  
Zhongwei Fan ◽  
Yutao Huang ◽  
Xiaochao Yan ◽  
Guangyan Guo ◽  
en Zh ◽  
...  

2021 ◽  
Vol ahead-of-print (ahead-of-print) ◽  
Author(s):  
Xiao Bo Liang ◽  
Xinghua Qu ◽  
YuanJun Zhang ◽  
Lianyin Xu ◽  
Fumin Zhang

Purpose Laser absolute distance measurement has the characteristics of high precision, wide range and non-contact. In laser ranging system, tracking and aiming measurement point is the precondition of automatic measurement. To solve this problem, this paper aims to propose a novel method. Design/methodology/approach For the central point of the hollow angle coupled mirror, this paper proposes a method based on correlation filtering and ellipse fitting. For non-cooperative target points, this paper proposes an extraction method based on correlation filtering and feature matching. Finally, a visual tracking and aiming system was constructed by combining the two-axis turntable, and experiments were carried out. Findings The target tracking algorithm has an accuracy of 91.15% and a speed of 19.5 frames per second. The algorithm can adapt to the change of target scale and short-term occlusion. The mean error and standard deviation of the center point extraction of the hollow Angle coupling mirror are 0.20 and 0.09 mm. The mean error and standard deviation of feature points matching for non-cooperative target were 0.06 mm and 0.16 mm. The visual tracking and aiming system can track a target running at a speed of 0.7 m/s, aiming error mean is 1.74 pixels and standard deviation is 0.67 pixel. Originality/value The results show that this method can achieve fast and high precision target tracking and aiming and has great application value in laser ranging.


2011 ◽  
Vol 38 (9) ◽  
pp. 0908001 ◽  
Author(s):  
李语强 Li Yuqiang ◽  
李祝莲 Li Zhulian ◽  
伏红林 Fu Honglin ◽  
郑向明 Zheng Xiangming ◽  
何少辉 He Shaohui ◽  
...  

2019 ◽  
Vol 46 (5) ◽  
pp. 0510001
Author(s):  
黄民双 Huang Minshuang ◽  
关在辉 Guan Zaihui

2017 ◽  
Vol 46 (7) ◽  
pp. 729001
Author(s):  
李祝莲 Li Zhulian ◽  
张海涛 Zhang Haitao ◽  
李语强 Li Yuqiang ◽  
伏红林 Fu Honglin ◽  
翟东升 Zhai Dongsheng

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