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A Technology Review of Time-of-flight Photon Counting for Advanced Remote Sensing

机译:飞行时间光子计数技术在先进遥感中的技术综述

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Time correlated single photon counting (TCSPC) has made tremendous progress during the past ten years enabling improved performance in precision time-of-flight (TOF) rangefinding and lidar. In this review the development and performance of several ranging systems is presented that use TCSPC for accurate ranging and range profiling over distances up to 17km. A range resolution of a few millimetres is routinely achieved over distances of several kilometres. These systems include single wavelength devices operating in the visible; multi-wavelength systems covering the visible and near infra-red; the use of electronic gating to reduce in-band solar background and, most recently, operation at high repetition rates without range aliasing- typically 10MHz over several kilometres. These systems operate at very low optical power (<100μW). The technique therefore has potential for eye-safe lidar monitoring of the environment and obvious military, security and surveillance sensing applications. The review will highlight the theoretical principles of photon counting and progress made in developing absolute ranging techniques that enable high repetition rate data acquisition that avoids range aliasing. Technology trends in TCSPC rangefinding are merging with those of quantum cryptography and its future application to revolutionary quantum imaging provides diverse and exciting research into secure covert sensing, ultra-low power active imaging and quantum rangefinding.
机译:与时间相关的单光子计数(TCSPC)在过去十年中取得了巨大进步,从而提高了精确飞行时间(TOF)测距和激光雷达的性能。在这篇综述中,介绍了几种测距系统的开发和性能,这些系统使用TCSPC进行了长达17公里的精确测距和测距分析。通常在几公里的距离内达到几毫米的距离分辨率。这些系统包括在可见光中工作的单波长设备;涵盖可见光和近红外的多波长系统;使用电子门控来减少带内太阳能背景,以及最近以高重复频率进行操作而不会出现范围混叠的情况(通常在几公里内为10MHz)。这些系统以非常低的光功率(<100μW)运行。因此,该技术具有对环境进行人眼安全的激光雷达监视以及明显的军事,安全和监视传感应用的潜力。这篇综述将重点介绍光子计数的理论原理,以及在开发绝对测距技术方面取得的进展,这些技术可以实现高重复率的数据采集,而避免了范围混叠。 TCSPC测距技术的发展趋势与量子密码学的发展趋势相融合,其在革命性量子成像中的未来应用为安全隐蔽传感,超低功率有源成像和量子测距提供了多样化而激动人心的研究。

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