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Multihop Relaying over IM/DD FSO Systems with Pointing Errors

机译:具有指向错误的IM / DD FSO系统上的多跳中继

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摘要

In this paper, the end-to-end performance of a multihop free-space optical system with amplify-and-forward channelstate- information-assisted or fixed-gain relays using intensity modulation with direct detection technique over Gamma-Gamma turbulence fading with pointing error impairments is studied. More specifically, novel closed-form results for the probability density function and the cumulative distribution function of the end-to-end signal-to-noise ratio (SNR) are derived in terms of the Fox’s H function. Based on these formulas, closed-form bounds for the outage probability, the average bit-error rate (BER) of on-off keying modulation scheme, the moments, and the ergodic capacity are presented. Furthermore, using the momentsbased approach, tight asymptotic approximations at high and low average SNR regimes are derived for the ergodic capacity in terms of simple elementary functions. The obtained results indicate that the overall system performance degrades with an increase of the number of hops. The effects of the atmospheric turbulence conditions and the pointing error are also quantified. All the analytical results are verified via computer-based Monte- Carlo simulations.
机译:在本文中,利用强度调制和直接检测技术对具有指向性的伽马-伽马湍流衰落进行放大和转发的信道状态信息辅助或固定增益中继的多跳自由空间光学系统的端到端性能研究了错误损害。更具体地说,根据Fox的H函数,得出了端对端信噪比(SNR)的概率密度函数和累积分布函数的新颖闭合形式结果。基于这些公式,给出了中断概率,开关键控调制方案的平均误码率(BER),力矩和遍历容量的闭合形式边界。此外,使用基于矩的方法,根据简单的基本函数,得出了遍历容量在高和低​​平均SNR模式下的紧渐近近似。获得的结果表明,总体系统性能会随着跳数的增加而降低。还量化了大气湍流条件和指向误差的影响。所有分析结果均通过基于计算机的蒙特卡洛模拟进行了验证。

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