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脉冲激光测距接收电路与计时方法研究

【作者】 黄震

【导师】 陆祖康; 倪旭翔;

【作者基本信息】 浙江大学 , 光学工程, 2004, 硕士

【摘要】 本论文详细讨论了一种可实现高速激光测距的接收电路和计时电路。实验系统采用APD作为光电传感器,将激光脉冲信号转变为微弱电流脉冲,经过两级放大后,信号变为幅度较大的电压脉冲,经过时点鉴别电路分别确定计时起点和终点后,由计时电路来精确测量两个时间点之间的时间间隔。普通脉冲测距计时方法,往往需要对飞行时间放大,导致测量速度下降。针对该问题,基于传递延时插入法和CPLD的工作原理,对快速测距技术进行了研究,研制了一种能实现收到回波脉冲后80ns内完成测距,测距精度±0.2m的计时电路,并将该电路集成于一片可编程逻辑器件中,减小了电路面积和功耗,增强了抗干扰能力。对15m外的物体,测量时间由目标物的距离决定。该项技术可用于需要对目标物进行高速扫描的三维激光成像雷达。

【Abstract】 A type of receiver circuit and timing circuit which can be applied in high-speed laser range-finder is discussed in this paper. In the experimental system APD transferred laser pulse to weak electrical current. After two-level amplification we got a voltage pulse that had a enough amplitude to be applied, the timing point was discriminated by the constant-fraction timing discriminator circuit. Timing circuits transferred the pulse flight time to digital signal accurately. Implementing normal time measuring method, flight time of pulse laser was multiplied and measuring speed was de-multiplied. To solve this problem, quick range measurement technology was researched based on the method of propagation delay and working principle of CPLD. A time measurement circuit with an accuracy of ?0.2m was designed and accomplished. It could finish the whole measurement process in 80ns after the bounced pulse was received. This circuit could be integrated in one chip of programmable logic device, so the area and power consumption was decreased and anti-interference ability was strengthened. If the object was more than 15m away, the measuring time of radar was determined by the distance of the objects. The content of this paper can be applied in three-dimensional laser image radar which scans on targets in high-speed.

  • 【网络出版投稿人】 浙江大学
  • 【网络出版年期】2004年 03期
  • 【分类号】O439
  • 【被引频次】103
  • 【下载频次】3773
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