Novel Optical Fast Random Number Generators Based on Integer Domain Chaotic Iterations
For cryptography and secure communications, it is very prerequisite that the random number generator (RNG) is based on non-deterministic physical mechanisms, extremely fast generator and robustness to noise are required. In this work, we present novel fast optoelectronic architecture RNGs based on integer domain chaotic iteration (IDCI), with a chaotic semiconductor laser, having time-delayed self-feedback. The solution stems from some well-defined discrete chaotic iterations that satisfy the reputed Devaneys definition of chaos, namely the integer domain chaotic iterations technique, improve the statistical properties of this RNG. Using standard criteria named NIST and DieHARD (famous batteries of tests), the randomness of the output sequences is verified.
Qianxue Wang Simin Yu Xiaole Fang
College of Automation, Guangdong University of Technology, China Land and Resources Technology Center of Guangdong Province, China
国际会议
Progress in Electromagnetics Research Symposium 2014(2014年电磁学研究新进展学术研讨会)
广州
英文
2069-2073
2014-08-01(万方平台首次上网日期,不代表论文的发表时间)