Enhancement of Secrecy Multicast Capacity over k - µ Shadowed Fading Channel

A. S. M. Badrudduza, S. M. S. Shahriyer, M. K. Kundu, S. Shabab
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引用次数: 4

Abstract

This paper illustrates a secure multicast scenario over k- µ shadowed fading channel in the appearance of multiple eavesdroppers. In order to achieve perfect secrecy, it must be ensured that no eavesdropper can decipher any transmitted information from the multicast channels. The secrecy analysis incorporates deriving mathematical expressions for two secrecy matrices such as the ergodic secrecy multicast capacity and the secure outage probability for multicasting. It is observed that proposed k - µ shadowed model unifies secrecy analysis of some well-known classical fading models and the derived expressions can help to quantify the significant impact of shadowing as-well-as other system parameters on secrecy performance. Finally, a close match between the analytical and Monte-Carlo simulation results is shown which validates the correctness of the derived expressions.
k -阴影衰落信道下保密组播容量的增强
提出了一种基于k-阴影衰落信道的多播安全方案。为了达到完全保密的目的,必须保证没有窃听者能够破译组播信道传输的任何信息。保密分析包括推导遍历保密组播容量和组播安全中断概率两个保密矩阵的数学表达式。观察到,所提出的k - μ阴影模型统一了一些著名的经典衰落模型的保密性分析,推导出的表达式有助于量化阴影以及其他系统参数对保密性性能的显著影响。最后,分析结果与蒙特卡罗仿真结果吻合较好,验证了推导表达式的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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