首页> 外文会议>SPIE Conference on Multispectral, Hyperspectral, and Ultraspectral Remote Sensing Technology, Techniques and Applications >Fast physical-random number generation for laser range finders using a laser diode's frequency noise -Comparison of the used lasers for fast random number generation-
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Fast physical-random number generation for laser range finders using a laser diode's frequency noise -Comparison of the used lasers for fast random number generation-

机译:使用激光二极管频率噪声的激光测距仪的快速物理随机数生成 - 用于快速随机数生成的使用过的激光器的比较 -

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While optical laser range finders use random signals to determine distance, a laser diode's fast frequency noise can perform the task. Moreover, this signal can be applied to physical-random number generation. This research describes a method, whereby laser diode's frequency noise characteristics generate a large number of physical-random numbers and determine the distance to a target [1] [2]. We tested the random number generating- and distance- measuring capabilities of two types of lasers; a Fabry-Perot-LD and VCSEL: (Vertical Cavity Surface Emitting Laser). With the Fabry-Perot etalon functioning as frequency discriminator, we investigated the physical-random numbers' characteristics from both Fabry-Perot-LD's and the VCSEL's characteristic's points of view. We verified the generated binary number's randomness, using NIST FIPS140-2 test, and noted the Random Number Generation (RNG) speed of a FP-LD was 48 Gbit/s, and that of a VCSEL was 159 Gbit/s. When the generation speed of the physical-random number is high, we can increase the sampling rate of our range finders and improve resolution.
机译:而光学激光测距仪使用随机信号来确定距离,激光二极管的快速频率噪声可以执行任务。此外,该信号可以被施加到物理随机数生成。该研究描述了一种方法,由此激光二极管的频率噪声特性生成大量的物理随机数,并确定到目标​​[1] [2]的距离。我们测试的随机数generating-和两个类型的激光器的距离 - 测量能力;法布里 - 珀罗-LD和VCSEL:(垂直腔表面发射激光器)。随着法布里 - 珀罗标准具作为鉴频器的作用,我们研究了来自法布里 - 珀罗LD的物理随机数的特点和观点的VCSEL的特征的点。我们已验证所生成的二进制数的随机性,使用NIST FIPS140-2测试,并指出一个FP-LD的随机数生成器(RNG)速度为48 Gbit / s的的VCSEL的,而为159 Gbit / s的。当物理随机数的产生速度高,我们可以增加测距仪的采样率和提高分辨率。

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