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首页> 外文期刊>International Journal of Computer Network and Information Security >Novel Certification Method for Quantum Random Number Generators
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Novel Certification Method for Quantum Random Number Generators

机译:量子随机数发生器的新型认证方法

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摘要

Random numbers have many uses, but finding true randomness is incredibly difficult. Therefore, quantum mechanics is used, using the essentially unpredictable behavior of a photon, to generate truly random numbers that form the basis of many modern cryptographic protocols. It is essential to trust cryptographic random number generators to generate only true random numbers. This is why certification methods are needed which will check both the performance of our device and the quality of the random bits generated. Self-testing as well as device independent quantum random number generation methods are analyzed in the paper. The advantages and disadvantages of both methods are identified. The model of a novel semi self-testing certification method for quantum random number generators is offered in the paper. This method combines different types of certification approaches and is rather secure and efficient. The method is very important for computer science, because it combines the best features from self-testing and device independent methods. It can be used, when the random numbers’ entropy depends on the device and when it does not. In the related researches, these approaches are offered to be used separately, depending on the random number generator. The offered novel certification technology can be properly used, when the device is compromised or spoiled. The technology can successfully detect unintended irregularities, operational problems, abnormalities and problems in the randomization process. The offered mythology assists to eliminate problems related to physical devices. The offered system has the higher certification randomness security and is faster than self-testing approaches. The method is rather efficient because it implements the different certification approaches in the parallel threads. The offered techniques make the offered research must more efficient than the other existing approaches. The corresponding programming simulation is implemented by means of the simulation techniques.
机译:随机数有许多用途,但查找真正的随机性非常困难。因此,使用量子力学,使用光子的基本上不可预测的行为,产生构成许多现代加密协议的基础的真正随机数。必须相信加密随机数生成器,仅生成真正的随机数。这就是为什么需要认证方法,这将检查我们的设备的性能和所生成的随机位的质量。在纸上分析了自检以及器件独立量子随机数产生方法。鉴定了两种方法的优点和缺点。纸张提供了Quantum随机数发电机的新型半自测认证方法的模型。该方法结合了不同类型的认证方法,并相当安全和有效。该方法对于计算机科学非常重要,因为它结合了自检和设备独立方法的最佳功能。当随机数的熵取决于设备时,可以使用它。在相关的研究中,根据随机数发生器,提供这些方法以单独使用。当设备受到损害或宠坏时,可以正确使用所提供的新型认证技术。该技术可以成功地检测随机化过程中的非预期的违规行为,操作问题,异常和问题。提供的神话有助于消除与物理设备相关的问题。提供的系统具有更高的认证随机性安全性,并且比自检方法快。该方法具有相当高的,因为它实现了并行线程中的不同认证方法。提供的技术使提供的研究必须比其他现有方法更有效。相应的编程仿真通过模拟技术实现。

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