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Integrated Chip Set for a Pulsed Time-of-Flight Laser Radar

机译:脉冲飞行时间激光雷达的集成芯片组

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The pulsed time-of-flight laser range finding techniques based on laser diode transmitter enables one to realize a mm-level accuracy to non-cooperative targets in a distance measurement range of several tens of meters in industrial applications such as the measurement of level heights in silos, positioning of tools and vehicles, velocity measurement, anti-collision radars, proximity sensors, etc. In this work the basic pulsed time-of-flight laser radar functions, the receiver channel and the time interval measurement unit, have been realized in the form of high-performance full-custom integrated circuits, which should pave the way for realizing a laser radar eventually as a component-like micro system thus increasing the number of possible applications for the developed techniques. The integrated BiCMOS receiver channel produces a logic level output pulse for the time interval measurement from the received laser echo. Two versions were realized, one detecting the leading edge of the received pulse and achieving an accuracy of +/-35mm in a dynamic range of 1:4000. In the other version gain control and constant fraction type of timing detection techniques are used to enhance the accuracy. With this circuit an input dynamic range of 1:650 (SNR>10) can be achieved with a timing accuracy of about +/-3mm. The developed fully integrated CMOS time-to-digital converter realization is based on a counter and a novel parallel two-step interpolation method. The single-shot precision and measurement range of the unit are 50ps and 2μs, respectively. In averaging mode the linearity is better than +/-5ps. Even better single-shot precision can be realized with analog interpolation techniques, however, at the expense of reduced stability.
机译:基于激光二极管发射器的脉冲飞行时间激光测距技术,使人们能够在数十米的工业距离测量范围内(例如,高度测量)实现对非合作目标的毫米级精度筒仓,工具和车辆的定位,速度测量,防撞雷达,接近传感器等。在这项工作中,基本的脉冲飞行时间激光雷达功能,接收器通道和时间间隔测量单元已经实现高性能全定制集成电路的形式,应该为最终将激光雷达实现为类似组件的微系统铺平道路,从而增加了已开发技术的可能应用数量。集成的BiCMOS接收器通道从接收到的激光回波产生用于时间间隔测量的逻辑电平输出脉冲。实现了两种版本,一种用于检测接收脉冲的前沿,并在1:4000的动态范围内达到+/- 35mm的精度。在另一种版本中,使用增益控制和恒定分数类型的定时检测技术来提高准确性。使用该电路,可以以大约+/- 3mm的定时精度实现1:650(SNR> 10)的输入动态范围。基于计数器和新颖的并行两步插值方法,开发出的完全集成的CMOS时模转换器实现了该功能。单位的单次精度和测量范围分别为50ps和2μs。在平均模式下,线性度优于+/- 5ps。使用模拟插值技术甚至可以实现更好的单发精度,但是会降低稳定性。

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