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Performance of an improved one-way error reconciliation protocol based on key redistribution

机译:基于密钥重新分配的改进的单向错误协调协议的性能

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摘要

In data post-processing for quantum key distribution, it is essential to have a highly efficient error reconciliation protocol. Based on the key redistribution scheme, we analyze a one-way error reconciliation protocol by data simulation. The relationship between the error correction capability and the key generation effciency of three kinds of Hamming code are demonstrated. The simulation results indicate that when the initial error rates are (0,1.5%], (1.5,4%], and (4,11%], using the Hamming (31,26), (15,11), and (7,4) codes to correct the error, respectively, the key generation rate will be maximized. Based on this, we propose a modifed one-way error reconciliation protocol which employs a mixed Hamming code concatenation scheme. The error correction capability and key generation rate are verifed through data simulation. Using the parameters of the posterior distribution based on the tested data, a simple method for estimating the bit error rate (BER) with a given confidence interval is estimated. The simulation results show that when the initial bit error rate is 10.00%, after 7 rounds of error correction, the error bits are eliminated completely, and the key generation rate is 10.36%; the BER expectation is 2.96??10??10, and when the confidence is 95% the corresponding BER upper limit is 2.17??10??9. By comparison, for the single (7,4) Hamming code error reconciliation scheme at a confdence of 95%, the key generation rate is only 6.09%, while the BER expectation is 5.92??10??9, with a BER upper limit of 4.34??10??8. Hence, our improved protocol is much better than the original one.
机译:在用于量子密钥分配的数据后处理中,必须具有高效的错误协调协议。基于关键的重新分配方案,我们通过数据仿真分析了一种单向错误协调协议。说明了三种汉明码的纠错能力与密钥生成效率之间的关系。仿真结果表明,当初始误差率分别为(0,1.5%],(1.5,4%]和(4,11%]时,使用汉明(31,26),(15,11)和( 7,4)分别纠正错误的代码,将最大程度地提高密钥生成率,在此基础上,我们提出了一种改进的单向纠错协议,该协议采用混合汉明码级联方案,纠错能力和密钥生成通过数据模拟验证码率,利用后验分布的参数,基于被测数据,估计了一种简单的估计给定置信区间的误码率的方法,仿真结果表明,当初始误码率出现时,速率为10.00%,经过7轮纠错,完全消除了错误位,密钥生成率为10.36%; BER期望值为2.96 ?? 10 ?? 10,当置信度为95%时,对应的BER上限是2.17 ?? 10 ?? 9。相比之下,对于单个(7,4)海明码er ror和解方案的置信度为95%,密钥生成率仅为6.09%,而BER期望值为5.92 ?? 10 ?? 9,BER上限为4.34 ?? 10 ?? 8。因此,我们改进的协议要比原始协议好得多。

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