Speed Measurement of the Moving Targets Using the Stepping Equivalent Range-Gate Method

Author:

Yang Gang1ORCID,Tian Zhaoshuo1,Bi Zongjie1,Cui Zihao1

Affiliation:

1. Institute of Marine Optoelectronic Equipment, Harbin Institute of Technology at Weihai, Weihai 264209, China

Abstract

In this paper, we proposed a stepping equivalent range-gate method (S-ERG method) to measure the speed and the distance of the moving target for range-gated imaging lidar. In this method, the speed is obtained by recording the time at which the moving target passes the front and back edges of the range gate, the distance information can also be obtained by the front and back edges of the range gate at the same time. To verify the feasibility of this method, a stationary target and a moving target with different speeds were measured by the S-ERG method. By using the S-ERG method, we not only obtained the distance information of the stationary target and the moving target at the front and back edges of the range gate, respectively, but also obtained the speed of the moving target. Compared to speeds measured by rotational displacement sensors, the speed measurement error of the S-ERG method is less than 5%, whether the target is far away or close to the range-gated lidar system, and this method is almost independent of the delay step time. The theoretical analysis and experimental results indicate range-gated imaging lidar using the S-ERG method has high practicality and wide applications.

Funder

Key Joint Fund projects of the National Nature Fund

National Key R&D Projects of the Ministry of Science and Technology

Publisher

MDPI AG

Reference21 articles.

1. Burnham, R.L. (2001). Laser Radar Technology and Applications VI, SPIE.

2. Dillon, R.F., Degloria, D.P., Pagliughi, F.M., Muller, J.T., and Michalik, M. (1992). Laser Radar Technology and Applications III, SPIE.

3. Xu, X., Pei, R., Luo, M., and Tan, Z. (2018, January 21–23). 3D Laser Imaging Method based on Low Cost 2D Laser Radar. Proceedings of the International Symposium on Optoelectronic Technology and Application, Beijing, China.

4. Russo, M., Beraldin, J.A., Remondino, F., Morlando, G., Guidi, G., and Shortis, M.R. (2007). Videometrics IX, SPIE.

5. Photonics-based radar-lidar integrated system for multi-sensor fusion applications;Xu;IEEE Sens. J.,2020

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