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Rate Adaption for Secure HARQ-CC System with Multiple Eavesdroppers

机译:具有多个窃听器的安全HARQ-CC系统的速率调整

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摘要

In this paper, we studied the secure transmission of a hybrid automatic repeat request with chase combining (HARQ-CC) system, under the existence of multiple eavesdroppers and limited latency. First, we analyzed some critical performance metrics, including connection outage probability (COP), secrecy outage probability (SOP) and effective secrecy throughput (EST). Then, to maximize the EST, three optimization problems of rate adaption were discussed: (i) optimizing the code rate with a given secrecy redundancy rate by a parameterized closed-form solution; (ii) optimizing the secrecy redundancy rate with a given code rate by a fixed-point method; (iii) optimizing both code rate and secrecy redundancy rate by an iterative optimization algorithm. We also considered COP and SOP constraints among the problems while corresponding solutions were deduced. Finally, numerical and simulated results verified our conclusions that the approximated SOP matches well with Monte–Carlo simulation for a strict reliable constraint, and that the optimized transmitting rate enhances EST efficiently with multiple eavesdroppers and retransmissions. Moreover, the influence of the number of eavesdroppers on secrecy performance was analyzed. Briefly, secrecy performance inevitably deteriorates with increasing number of eavesdroppers due to raised information leakage.
机译:在本文中,我们研究了在多个窃听者的存在和有限的延迟下的追逐组合(HARQ-CC)系统中的混合自动重复请求的安全传输。首先,我们分析了一些关键的性能指标,包括连接中断概率(COP),保密性中断概率(SOP)和有效的保密吞吐量(EST)。然后,为了最大化EST,讨论了率适应的三个优化问题:(i)通过参数化闭合液解决方案优化具有给定保密冗余速率的码率; (ii)通过定点方法优化具有给定代码率的保密冗余速率; (iii)通过迭代优化算法优化代码率和保密冗余速率。在推导出相应的解决方案时,我们还考虑了问题的警察和SOP限制。最后,数值和模拟结果验证了我们的结论,即近似的SOP与Monte-Carlo仿真匹配的严格可靠约束,并且优化的发射速率有效地增强了多个窃听者和重传。此外,分析了窃听者数量对秘密性能的影响。简而言之,由于升高的信息泄漏,越来越多的窃听者,保密性能不可避免地恶化。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2020(22),4
  • 年度 2020
  • 页码 403
  • 总页数 18
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:物理层安全性(PLS);混合自动重复请求(HARQ);追逐组合(CC);秘密中断概率(SOP);有效的保密吞吐量(EST);

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