用于精确距离测量的超声/光脉冲传感器

D. Wobschall, M. Zeng, B. Srinivasaraghavan
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引用次数: 12

摘要

本文描述的超声传输时间和光脉冲组合方法是对标准超声回波的改进,它提供了更低的信号损耗和更精确的传感器参考点位置,特别是发射和接收换能器。这里描述的超声波传输时间传感器仅使用单向超声波脉冲。传输时间,通常为0.5至50毫秒,与超声波发送器和接收换能器之间的距离成正比。有三个优点:(1)超声波信号损失少得多,(2)换能器的位置明确,(3)相位和脉冲形状可控且可重复。光脉冲用于同步发射器和接收器。在这个版本中,光脉冲由其微控制器从超声波接收单元发送到超声波发送单元
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An Ultrasonic/Optical Pulse Sensor for Precise Distance Measurements
The combined ultrasonic transit time and optical pulse method described here is an improvement over the standard ultrasonic echo by providing a lower signal loss and more precise location of sensor reference points, specifically the transmitting and receiving transducers. The ultrasonic transit time sensor described here uses only a one-way ultrasonic pulse. The transit time, typically 0.5 to 50 ms, is proportional to the distance between the ultrasonic transmitter and receiver transducers. There are three advantages: (1) the ultrasonic signal loss is much less, (2) the location of the transducers is well defined, and (3) the phase and pulse shapes are controlled and reproducible. An optical pulse is used to synchronize the transmitter and receiver. In this version the optical pulse is sent from the ultrasonic receiver unit, initiated by its microcontroller, to the ultrasonic transmitter unit
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