Pulsed Optoelectronic Rangefinder and Its Measurement Applications in Architectural Design Rationality Assessment

IF 0.6 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Nanoelectronics and Optoelectronics Pub Date : 2023-10-01 DOI:10.1166/jno.2023.3498
Zhifang Cao
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Abstract

The laser rangefinder is a device that combines various technologies such as optoelectronics, electronics, microcontroller control technology, signal control, processing technology, and precision mechanical technology. This device has wide application value in aerospace, automatic control, industry, military, geodesy, and construction surveying, among other fields. The pulse laser rangefinder designed uses the SPLLL90_3 laser emitting diode for the laser emission circuit and employs the AD500_9 laser receiving diode for the laser reception circuit. The design of the laser emission circuit includes laser diode selection, emission, sample signal’s modulation circuit design, pulse signal generation, and driving circuit. The design of the laser reception circuit includes laser receiving diode selection, laser reception pulse signal’s acquisition circuit, reception signal adjustment circuit, and microcontroller peripheral circuit. After completing the hardware design of the pulse laser rangefinder, performance testing is conducted. The laser emission waveform and reception waveform are tested under an oscilloscope. The results show that the emission pulse generation and reception pulse acquisition circuits work normally. Range tests show that the rangefinder has a high degree of fit between theoretical and actual measurement distances within a certain time interval, meeting the design expectations. The designed optoelectronic rangefinder is adopted to evaluate the rationality of the design of building wall freeform surfaces through measurement. The results suggest that the designed optoelectronic rangefinder achieves higher detection efficiency and accuracy compared to traditional evaluation methods.
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建筑设计合理性评估中的脉冲光电测距仪及其测量应用
激光测距仪是一种集光电、电子、微控制器控制技术、信号控制、处理技术和精密机械技术等多种技术于一体的设备。该设备在航空航天、自动控制、工业、军事、大地测量和建筑测量等领域具有广泛的应用价值。所设计的脉冲激光测距仪的激光发射电路采用 SPLLL90_3 激光发射二极管,激光接收电路采用 AD500_9 激光接收二极管。激光发射电路的设计包括激光二极管的选择、发射、采样信号的调制电路设计、脉冲信号的产生和驱动电路。激光接收电路的设计包括激光接收二极管的选择、激光接收脉冲信号的采集电路、接收信号调节电路和单片机外围电路。在完成脉冲激光测距仪的硬件设计后,进行了性能测试。在示波器下测试了激光发射波形和接收波形。结果表明,发射脉冲发生电路和接收脉冲采集电路工作正常。测距测试表明,在一定时间间隔内,测距仪的理论距离和实际测量距离高度吻合,达到了设计预期。采用所设计的光电测距仪,通过测量评估建筑墙体自由曲面设计的合理性。结果表明,与传统的评估方法相比,所设计的光电测距仪实现了更高的检测效率和精度。
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来源期刊
Journal of Nanoelectronics and Optoelectronics
Journal of Nanoelectronics and Optoelectronics 工程技术-工程:电子与电气
自引率
16.70%
发文量
48
审稿时长
12.5 months
期刊最新文献
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