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Study of high speed quenching circuits in photon counting imaging LIDAR system

机译:光子计数成像激光雷达系统中的高速淬火电路研究

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Detection theory of single photon avalanche diodes(SPADs),which are applied in photon counting imaging light detection and ranging(LIDAR)system, is analyzed in detail in this paper. Four types of common quenching circuits based on SPADs, namely passive quenching, active quenching, gate-control quenching, and hybrid quenching circuits are studied. Furthermore,operational principle and performance characteristics of each of these four types of quenching circuits are fully discussed. Besides, an improved hybrid quenching circuit prone to be integrated with ASIC technology is brought up. Analysis shows that this new circuit can quench and reset SPADs with high speed, meeting the demands for qualities of quenching circuits in photon counting imaging LIDAR system. Also, results of theoretical study indicate that some performance indexes like response rate, quenching speed and dead time are satisfactory. Above all, this quenching circuit is simpler in structure and its cost is much smaller compared with common quenching circuits known to us in papers published so far. As a result, the prospect of this new circuit is probably good after more efforts are taken to integrate it with photon counting imaging LIDAR.
机译:详细分析了光子计数成像光检测测距(LIDAR)系统中应用的单光子雪崩二极管(SPAD)的检测原理。研究了基于SPAD的四种常见的淬火电路,即被动淬火,主动淬火,栅极控制淬火和混合淬火电路。此外,充分讨论了这四种类型的灭弧电路的工作原理和性能特征。此外,提出了一种易于与ASIC技术集成的改进型混合猝灭电路。分析表明,该新电路可以对SPAD进行高速淬灭和复位,满足光子计数成像激光雷达系统对淬灭电路质量的要求。另外,理论研究的结果表明,某些性能指标如响应速度,淬火速度和空载时间是令人满意的。最重要的是,与迄今为止在我们已发表的论文中已知的普通淬火电路相比,该淬火电路结构更简单,成本也低得多。结果,经过更多的努力将其与光子计数成像激光雷达集成后,这种新电路的前景可能很好。

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