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The Channel Quantization Alternating Algorithm in the Secret Key Generation System

机译:秘密密钥生成系统中的通道量化交替算法

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In order to solve the problem that the high bit inconsistent rate between the two parties in the legal communication affects the key length, an improved CQA algorithm that calculating the log likelihood ratio that each bit is '0' or '1' after quantization sample value is proposed. Suppose both parties are Alice and Bob. The algorithm uses Alice's position index and Bob's sampling value to compute the conditional probabilities that each bit is '0' or '1' after quantize Alice's corresponding sample value. The probability log likelihood ratio is then calculated and the hard decision of the log likelihood ratio is used as the quantization result without having to quantize the sampled values by moving the quantization threshold. The simulation results show that the initial inconsistent rate of the improved algorithm is lower than that of the original quantization algorithm and the generated key is longer. When the number of quantization intervals is equal and the correlation coefficient between random variables is less than 0.87, the key length generated by the improved algorithm is increased by at least 0.15bits/symbol; When the number of quantization subintervals of the improved algorithm is 1/2 of the original algorithm and the correlation coefficient is less than 0.83, the key length generated by the improved algorithm is increased by at least 0.1bits/symbol.
机译:为了解决法律通信中双方之间的高比特不一致速率影响关键长度,改进的CQA算法计算每位在量化样本值之后计算每个位为“0”或“1”的逻辑似然比提出。假设双方都是爱丽丝和鲍勃。该算法使用Alice的位置索引和BOB的采样值来计算量化Alice的相应样本值后的每个位为“0”或“1”的条件概率。然后计算概率对数似然比,并且使用对数似然比的硬判定作为量化结果,而无需通过移动量化阈值来量化采样值。仿真结果表明,改进算法的初始不一致速率低于原始量化算法的初始不一致速率,并且生成的密钥更长。当量化间隔的数量相等并且随机变量之间的相关系数小于0.87时,由改进的算法产生的键长度增加至少0.15bits /符号;当改进算法的量化子内部的数量是原始算法的1/2并且相关系数小于0.83时,由改进的算法产生的密钥长度增加至少0.1bits /符号。

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