19 October 2016 High speed sampling circuit design for pulse laser ranging
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Proceedings Volume 10153, Advanced Laser Manufacturing Technology; 101531A (2016) https://doi.org/10.1117/12.2247533
Event: International Symposium on Optoelectronic Technology and Application 2016, 2016, Beijing, China
Abstract
In recent years, with the rapid development of digital chip, high speed sampling rate analog to digital conversion chip can be used to sample narrow laser pulse echo. Moreover, high speed processor is widely applied to achieve digital laser echo signal processing algorithm. The development of digital chip greatly improved the laser ranging detection accuracy. High speed sampling and processing circuit used in the laser ranging detection system has gradually been a research hotspot. In this paper, a pulse laser echo data logging and digital signal processing circuit system is studied based on the high speed sampling. This circuit consists of two parts: the pulse laser echo data processing circuit and the data transmission circuit. The pulse laser echo data processing circuit includes a laser diode, a laser detector and a high sample rate data logging circuit. The data transmission circuit receives the processed data from the pulse laser echo data processing circuit. The sample data is transmitted to the computer through USB2.0 interface. Finally, a PC interface is designed using C# language, in which the sampling laser pulse echo signal is demonstrated and the processed laser pulse is plotted. Finally, the laser ranging experiment is carried out to test the pulse laser echo data logging and digital signal processing circuit system. The experiment result demonstrates that the laser ranging hardware system achieved high speed data logging, high speed processing and high speed sampling data transmission.
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Rui-hai Qian, Xuan-yi Gao, Yan-mei Zhang, Huan Li, Hai-chao Guo, Xiao-kang Guo, Shi-jie He, "High speed sampling circuit design for pulse laser ranging", Proc. SPIE 10153, Advanced Laser Manufacturing Technology, 101531A (19 October 2016); doi: 10.1117/12.2247533; https://doi.org/10.1117/12.2247533
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