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The Rate-Equivocation Region of the Degraded Discrete-Time Poisson Wiretap Channel

机译:降级离散时间泊松丝网通道的速率 - 均衡区域

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This paper addresses the degraded discrete-time Poisson wiretap channel (DT-PWC) in an optical wireless communication system based on intensity modulation and direct detection (IM-DD). Subject to nonnegativity, average-intensity, and bandwidth constraints, we find that the secrecy capacity and the entire boundary of the rate-equivocation region are attained by discrete distributions with a countably infinite number of mass points, but with finitely many mass points in any bounded interval. Additionally, we shed light on the asymptotic behavior of the secrecy capacity in the regimes where the average intensity constraint either tends to zero (low-intensity) or tends to infinity (high-intensity). In the low-intensity regime, we observe that: when the channel gains of the legitimate receiver and the eavesdropper are identical, the secrecy capacity scales linearly in the average-intensity ε; whereas when the channel gains are different, the secrecy capacity scales, to within a constant, like $(lpha_{B}-lpha_{E})mathcal{E}loglograc{1}{mathcal{E}}$, where αB and αE are the legitimate receiver's and the eavesdropper's channel gains, respectively. In the high-intensity regime, we establish that the secrecy capacity does not scale with the average intensity constraint.
机译:本文基于强度调制和直接检测(IM-DD),在光学无线通信系统中解决了劣化的离散时间泊松​​丝网(DT-PWC)。受非承诺,平均强度和带宽约束的影响,我们发现通过离散的分布来实现速率和平区域的全部率和整个边界,其具有可选的无限数量的质量点,但在任何情况下都有很多质量点有界间隔。另外,我们在倾向于零(低强度)或倾向于无穷大(高强度)的方案中阐明了散发容量的渐近行为。在低强度制度中,我们观察到:当合法接收器和窃听器的频道增益相同时,保密容量在平均 - 强度ε中线性缩放;虽然当频道增益不同时,保密容量缩放,以在常量内,如 $( alpha_ {b} - alpha_ {e}) mathcal {e} log log frac {1} { mathcal {e}} $ ,其中α b 和α. E 是合法的接收器和窃听者的渠道收益。在高强度制度中,我们确定保密容量不会与平均强度约束量扩展。

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