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首页> 外文期刊>Applied optics >Impact of nonzero boresight pointing errors on the performance of a relay-assisted free-space optical communication system over exponentiated Weibull fading channels
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Impact of nonzero boresight pointing errors on the performance of a relay-assisted free-space optical communication system over exponentiated Weibull fading channels

机译:非零视轴指向误差对指数威布尔衰落信道上中继辅助自由空间光通信系统性能的影响

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摘要

The impact of nonzero boresight pointing errors on the system performance of decode-and-forward protocol-based multihop parallel optical wireless communication systems is studied. For the aggregated fading channel, the atmospheric turbulence is simulated by an exponentiated Weibull model, and pointing errors are described by one recently proposed statistical model including both boresight and jitter. The binary phase-shift keying sub-carrier intensity modulation-based analytical average bit error rate (ABER) and outage probability expressions are achieved for a nonidentically and independently distributed system. The ABER and outage probability are then analyzed with different turbulence strengths, receiving aperture sizes, structure parameters (P and Q), jitter variances, and boresight displacements. The results show that aperture averaging offers almost the same system performance improvement with boresight included or not, despite the values of P and Q. The performance enhancement owing to the increase of cooperative path (P) is more evident with nonzero boresight than that with zero boresight (jitter only), whereas the performance deterioration because of the increasing hops (Q) with nonzero boresight is almost the same as that with zero boresight. Monte Carlo simulation is offered to verify the validity of ABER and outage probability expressions. (C) 2016 Optical Society of America
机译:研究了非零视轴指向误差对基于解码转发协议的多跳并行光学无线通信系统性能的影响。对于聚集的衰落信道,通过指数威布尔模型来模拟大气湍流,并通过最近提出的包括视轴和抖动的统计模型来描述指向误差。针对一个不完全相同且独立分布的系统,获得了基于二进制相移键控子载波强度调制的分析平均误码率(ABER)和中断概率表达式。然后使用不同的湍流强度,接收孔径大小,结构参数(P和Q),抖动变化和视轴位移来分析ABER和中断概率。结果表明,不管P和Q的值如何,孔径平均在包括或不包括视轴的情况下都能提供几乎相同的系统性能改善。非零视轴与零时相比,协作路径(P)的增加所带来的性能增强更为明显视轴(仅抖动),而视轴为非零时,由于跳数(Q)增加而导致的性能下降几乎与零视轴时相同。提供了蒙特卡罗仿真来验证ABER和中断概率表达式的有效性。 (C)2016美国眼镜学会

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