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Performance evaluation and security analysis of ground-to-satellite FSO system with CV-QKD protocol

机译:CV-QKD协议地面卫星FSO系统的性能评估与安全分析

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This study evaluates the performance of a secure ground-to-satellite free-space optical (FSO) system using a bipolar pulse amplitude modulation over modulated gamma fading channel. A closed-form expression is derived for the joint probability of a satellite-based continuous-variable quantum key distribution (CV-QKD) protocol that uses dual-threshold detection. Furthermore, to study the system behaviour, closed-form expressions for quantum bit-error-rate (QBER) and quantum bit-discard rate (QBDR) are given. The accuracy of the proposed derivations is validated using Monte-Carlo simulations and numerical analysis. The dual-threshold range is optimised to satisfy design criteria in terms of QBER and QBDR. Finally, a sufficient selection of transmitter and receiver parameters ensures a guarantee of system security. Additionally, the information capacity is maximised by a scaling coefficient of 0.3 x 10(-6).
机译:本研究评估了使用双极脉冲幅度调制在调制伽马衰落通道上使用双极脉冲幅度调制来评估安全的地面卫星自由空间光学(FSO)系统的性能。导出闭合表达式表达式,用于使用双阈值检测的基于卫星的连续变量量子密钥分布(CV-QKD)协议的联合概率。此外,为了研究系统行为,给出了量子误码率(QBER)和量子位丢弃速率(QBDR)的闭合形式表达式。使用Monte-Carlo仿真和数值分析验证了所提出的衍生的准确性。双阈值范围优化以满足QBER和QBDR的设计标准。最后,充分选择的发射机和接收器参数确保了系统安全的保证。另外,信息容量通过0.3×10(-6)的缩放系数最大化。

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