arXiv:2509.20141quant-phcs.AR2025-09综述被引 2

将经典光通信信号处理技术迁移至连续变量量子密钥分发,提升系统性能。

Digital Signal Processing from Classical Coherent Systems to Continuous-Variable QKD: A Review of Cross-Domain Techniques, Applications, and Challenges

  • 将卡尔曼滤波、载波恢复等经典信号处理算法改造用于量子场景。
  • 在极低信噪比下实现稳定相位跟踪,但实时偏振补偿仍存挑战。
  • 适合关注量子通信与经典通信融合的科研人员和工程开发者。

本文系统综述了数字信号处理(DSP)技术从经典相干光通信系统向连续变量量子密钥分发(CV-QKD)的应用。通过采用基于PRISMA协议改进的APISSER方法,在IEEE Xplore和Web of Science数据库(2021–2025)中检索到220篇相关文献,经筛选、分类与分析,回答六个研究问题。结果表明,许多经典DSP算法如卡尔曼滤波、载波恢复、自适应均衡及机器学习辅助信号估计已被成功移植至量子领域,通常需针对安全性和噪声约束进行调整。同时发现,神经均衡、概率整形、联合重定时-均衡滤波等新型光通信技术具有高潜力可用于未来CV-QKD集成。尽管如此,超低信噪比下的鲁棒相位跟踪、实时偏振补偿以及与经典信道的安全共存仍是主要挑战。本综述梳理了该交叉领域的趋势、技术瓶颈与新兴机遇,助力可扩展、高鲁棒性的CV-QKD系统发展。

原文摘要 · Abstract (English)

This systematic review investigates the application of digital signal processing (DSP) techniques -- originally developed for coherent optical communication systems to continuous-variable quantum key distribution (CV-QKD). The convergence of these domains has enabled significant advances in CV-QKD performance, particularly in phase synchronization, polarization tracking, and excess noise mitigation. To provide a comprehensive and reproducible synthesis of this emerging field, we employed the APISSER methodology, a task-oriented framework adapted from the PRISMA protocol. A structured search across IEEE Xplore and Web of Science databases (2021-2025) yielded 220 relevant publications, which were screened, classified, and analyzed to address six research questions. Our findings highlight that many classical DSP algorithms, such as Kalman filtering, carrier recovery, adaptive equalization, and machine-learning-assisted signal estimation, have been successfully adapted to the quantum regime, often requiring modifications to meet security and noise constraints. We also identify a range of recent DSP innovations in coherent optical communication systems with high potential for future CV-QKD integration, including neural equalization, probabilistic shaping, and joint retiming-equalization filters. Despite these advances, challenges remain in achieving robust phase tracking under ultra-low Signal-to-Noise Ratio (SNR) conditions, real-time polarization compensation, and secure co-existence with classical channels. This review maps current trends, technical barriers, and emerging opportunities at the intersection of signal processing for quantum and classical communication, supporting the development of scalable and resilient CV-QKD systems.

量子通信信号处理光通信密钥分发

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