Scalar Minimax Filter-based Phase Tracking for Continuous-Variable Quantum Key Distribution

F. M. Alsalami, S. Rajbhandari, Zahir Ahmad, D. Grace
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Abstract

In local oscillator (LLO)-based continuous-variable quantum key distribution (CV-QKD), a difference between the linewidth values of two free-running lasers at Alice and Bob induces a phase drift noise. This work proposes a novel minimax filter-based phase tracking that aims to minimize the phase drift considering maximum residual phase error to achieve optimal phase estimation. Simulation results show that the minimax filter offers a lower phase estimation mean square error (MSE) value compared to the Kalman filter when worst-case phase drift error due to high linewidth difference or high measurement noise values are considered.
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基于标量极大极小滤波器的连续变量量子密钥分配相位跟踪
在基于本振(LLO)的连续变量量子密钥分配(CV-QKD)中,Alice和Bob两个自由运行激光器的线宽值之间的差异会引起相位漂移噪声。本文提出了一种基于极大极小滤波器的相位跟踪方法,该方法在考虑最大剩余相位误差的情况下最小化相位漂移,从而实现最优相位估计。仿真结果表明,在考虑高线宽差或高测量噪声值引起的最坏情况相漂移误差时,极大极小滤波比卡尔曼滤波具有更低的相位估计均方误差(MSE)。
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