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Advanced Coding Techniques For Fiber-Optic Communications And Quantum Key Distribution

机译:光纤通信和量子密钥分配的高级编码技术

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摘要

Coding is an essential technology for efficient fiber-optic communications and secure quantum communications. In particular, low-density parity-check (LDPC) coding is favoured due to its strong error correction capability and high-throughput implementation feasibility. In fiber-optic communications, it has been realized that advanced high-order modulation formats and soft-decision forward error correction (FEC) such as LDPC codes are the key technologies for the next-generation high-speed optical communications. Therefore, energy-efficient LDPC coding in combination with advanced modulation formats is an important topic that needs to be studied for fiber-optic communications. In secure quantum communications, large-alphabet quantum key distribution (QKD) is becoming attractive recently due to its potential in improving the efficiency of key exchange. To recover the carried information bits, efficient information reconciliation is desirable, for which the use of LDPC coding is essential. In this dissertation, we first explore different efficient LDPC coding schemes for optical transmission of polarization-division multiplexed quadrature-amplitude modulation (QAM) signals. We show that high energy efficiency can be achieved without incurring extra overhead and complexity. We then study the transmission performance of LDPC-coded turbo equalization for QAM signals in a realistic fiber link as well as that of pragmatic turbo equalizers. Further, leveraging the polarization freedom of light, we expand the signal constellation into a four-dimensional (4D) space and evaluate the performance of LDPC-coded 4D signals in terms of transmission reach. Lastly, we study the security of a proposed weak-coherent-state large-alphabet QKD protocol and investigate the information reconciliation efficiency based on LDPC coding.
机译:编码是有效的光纤通信和安全的量子通信的必不可少的技术。特别地,低密度奇偶校验(LDPC)编码由于其强大的纠错能力和高吞吐量实现可行性而受到青睐。在光纤通信中,已经认识到高级的高阶调制格式和诸如LDPC码的软判决前向纠错(FEC)是下一代高速光通信的关键技术。因此,与先进的调制格式相结合的节能LDPC编码是光纤通信需要研究的重要课题。在安全的量子通信中,大字母量子密钥分发(QKD)由于具有提高密钥交换效率的潜力,最近变得越来越有吸引力。为了恢复所携带的信息比特,期望有效的信息协调,为此,必须使用LDPC编码。在本文中,我们首先探索了用于偏振分频复用正交幅度调制(QAM)信号光传输的不同有效LDPC编码方案。我们表明,可以实现高能源效率,而不会产生额外的开销和复杂性。然后,我们研究了实际光纤链路中用于QAM信号的LDPC编码的Turbo均衡的传输性能以及实用的Turbo均衡器的传输性能。此外,利用光的偏振自由度,我们将信号星座图扩展到四维(4D)空间,并根据传输范围评估LDPC编码的4D信号的性能。最后,我们研究了一种弱相干态大字母QKD协议的安全性,并研究了基于LDPC编码的信息协调效率。

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    Zhang Yequn;

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  • 年度 2015
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