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首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >ENHANCED SECURE KEY EXCHANGE SYSTEMS BASED ON THE JOHNSON-NOISE SCHEME
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ENHANCED SECURE KEY EXCHANGE SYSTEMS BASED ON THE JOHNSON-NOISE SCHEME

机译:增强的安全密钥交换系统基于约翰逊噪声方案

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We introduce seven new versions of the Kirchhoff-Law-Johnson-(like)-Noise (KLJN) classical physical secure key exchange scheme and a new transient protocol for practically-perfect security. While these practical improvements offer progressively enhanced security and/or speed for non-ideal conditions, the fundamental physical laws providing the security remain the same. In the "intelligent" KLJN (iKLJN) scheme, Alice and Bob utilize the fact that they exactly know not only their own resistor value but also the stochastic time function of their own noise, which they generate before feeding it into the loop. By using this extra information, they can reduce the duration of exchanging a single bit and in this way they achieve not only higher speed but also an enhanced security because Eve's information will significantly be reduced due to smaller statistics. In the "multiple" KLJN (MKLJN) system, Alice and Bob have publicly known identical sets of different resistors with a proper, publicly known truth table about the bit-interpretation of their combination. In this new situation, for Eve to succeed, it is not enough to find out which end has the higher resistor. Eve must exactly identify the actual resistor values at both sides. In the "keyed" KLJN (KKLJN) system, by using secure communication with a formerly shared key, Alice and Bob share a proper time-dependent truth table for the bit-interpretation of the resistor situation for each secure bit exchange step during generating the next key. In this new situation, for Eve to succeed, it is not enough to find out the resistor values at the two ends. Eve must also know the former key. The remaining four KLJN schemes are the combinations of the above protocols to synergically enhance the security properties. These are: the "intelligent-multiple" (iMKLJN), the "intelligent-keyed" (iKKLJN), the "keyed-multiple" (KMKLJN) and the "intelligent-keyed-multiple" (iKMKLJN) KLJN key exchange systems. Finally, we introduce a new transient-protocol offering practically-perfect security without privacy amplification, which is not needed in practical applications but it is shown for the sake of ongoing discussions.
机译:我们引入了七个新版本的Kirchhoff-Law-Johnson -(像)噪声(KLJN)经典物理和安全的密钥交换方案一个新的瞬态简直完美的协议安全。提供逐步增强的安全性和/或速度对非理想条件,最根本的提供安全仍然是物理定律相同。爱丽丝和鲍勃利用他们确切的事实不仅知道自己的电阻也值自己的噪声的随机时间函数,他们产生之前给到循环。减少交换一个比特的时间以这种方式,他们不仅实现更高但也一个增强的安全因为夏娃的速度将大大降低由于信息较小的数据。(MKLJN)系统,爱丽丝和鲍勃已经公开套不同的电阻相同适当的,公开的真值表bit-interpretation的组合。新形势下,夏娃要想成功,它不是足以找到那些有更高的结束电阻。在双方电阻的值。KLJN (KKLJN)系统,通过使用安全沟通前共享密钥,爱丽丝和鲍勃共享一个适当的时间真值表bit-interpretation的电阻情况为每个安全位交换步骤在生成下一个关键。情况下,夏娃要想成功,它是不够的找出两端电阻的值。夜还必须知道前者的关键。四个KLJN方案的组合以上协议synergically提高安全属性。“intelligent-multiple”(iMKLJN)“智能钥匙”(iKKLJN)(KMKLJN)和“keyed-multiple”“intelligent-keyed-multiple”(iKMKLJN) KLJN关键交换系统。transient-protocol提供简直完美安全没有隐私放大但它是不需要在实际应用为了显示正在进行的讨论。

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