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Anti-interference single-photon LiDAR using stochastic pulse position modulation

机译:使用随机脉冲位置调制抗干扰单光子激光雷达

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摘要

This Letter introduces an anti-interference single-photon light detection and ranging (LiDAR) system with photon-driven stochastic pulse position modulation. A photon arrival sequence with a programmable minimum interval time and trigger rate was proposed to trigger laser pulses, thus providing true nature-based randomness in modulation which is beneficial for achieving bet ter anti-interference capability. In the proposed LiDAR system, two complementary metal-oxide-semiconductor single-photon avalanche diodes (SPADs) are used as an optical receiver and to generate a random trigger pattern of a pulsed laser. To prevent the range ambiguity problem, an interval-time filter capable of controlling the minimum interval time is integrated into the LiDAR system. A trigger rate controller capable of adaptively controlling the driving voltage of a light-emitting diode coupled with the SPAD responsible for the generation of the random trigger sequence is also integrated for achieving a precise control of trigger rate. Finally, a proof-ofconcept demonstration was provided through experiments, and the obtained results were consistent with theoretical predictions. At an effective trigger rate of 800 kHz,, an excellent suppression ratio of 56.2 dB has been achieved in the presence of a 1 MHz periodic interference. (C) 2020 Optical Society of America
机译:这封信引入了具有光子驱动的随机脉冲位置调制的抗干扰单光子光检测和测距(LIDAR)系统。提出了具有可编程最小间隔时间和触发速率的光子到达序列来触发激光脉冲,从而在调制中提供真正的基于性的随机性,这有利于实现BET TER抗干扰能力。在所提出的激光雷达系统中,两个互补金属氧化物半导体单光子雪崩二极管(SPAD的)被用作一个光接收器,并产生一个脉冲激光的随机触发码形。为了防止范围模糊性问题,能够控制最小间隔时间的间隔时间过滤器集成到LIDAR系统中。还集成了一种能够自适应地控制与负责为随机触发序列的发光二极管的驱动电压的触发速率控制器,用于实现对触发速率的精确控制。最后,通过实验提供了概念证明,并且获得的结果与理论预测一致。在800 kHz的有效触发率下,在1MHz的周期性干扰的存在下,已经实现了优异的抑制比率为56.2dB。 (c)2020美国光学学会

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