基于修正指数威布尔信道模型的FSO系统性能增强

H. Pradhan
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引用次数: 0

摘要

在自由空间光学(FSO)通信系统中,大气中的湍流导致接收端接收信号的强度波动。由于这个原因,影响了自由空间光通信系统的性能,导致接收信号的衰落。利用复杂的信道建模和衰落抑制技术改进FSO系统的性能。利用改进的指数威布尔(MEW)信道模型对FSO系统进行性能改进。此外,采用不同的信道模型,如Gamma-Gamma和指数威布尔,比较了FSO系统的性能。利用MEW、Gamma-Gamma和指数Weibull信道模型,得到了不同信噪比下的误码率(BER)。此外,利用所提出的信道模型计算了1.8、5和13 mm不同孔径下的误码率,以提高FSO系统的性能。同样地,利用中继辅助技术利用所提出的信道模型计算误码率。在不同大气湍流条件下,从信道衰落的角度对自由空间光通信系统进行了改进。为了提高FSO通信系统的性能,提出了一种合适的信道模型。所提出的MEW信道模型能很好地描述强大气湍流引起的衰落。此外,利用孔径平均和中继辅助FSO系统等消噪技术提高了自由空间光学系统的性能。
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Performance Enhancement of FSO System using Modified Exponentiated Weibull Channel Model
In free space optics (FSO) communication system, turbulence in the atmosphere leads to the intensity fluctuations of the received signal at the receiver end. Due to this reason, the performance of the free space optical communication system gets affected and it results fading of the received signal. Performance improvement of FSO system using sophisticated channel modelling and fading mitigation techniques. This paper presents the performance improvement of FSO system using modified Exponentiated Weibull (MEW) channel model. Moreover, the performance of FSO system is compared using different channel models such as Gamma-Gamma and Exponentiated Weibull. The results in terms of bit error rate (BER) with respect to different signal to noise ratio (SNR) is obtained using MEW, Gamma-Gamma and Exponentiated Weibull channel models. In addition, BER is calculated for different aperture sizes such as 1.8, 5 and 13 mm using the proposed channel model to improve the performance of FSO system. Similarly, the relay assisted technique is utilized to calculate the BER using the proposed channel model. An improvement of free space optical communication system is presented in terms of fading using channel modelling at different atmospheric turbulence conditions. An appropriate channel model is proposed for improving the performance of FSO communication system using fading mitigation techniques. The proposed MEW channel model best describes the strong atmospheric turbulence induced fading. In addition, the performance of free space optics system is improved using fading mitigation techniques such as aperture averaging and relay assisted FSO system.
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来源期刊
International Journal of Sensors, Wireless Communications and Control
International Journal of Sensors, Wireless Communications and Control Engineering-Electrical and Electronic Engineering
CiteScore
2.20
自引率
0.00%
发文量
53
期刊介绍: International Journal of Sensors, Wireless Communications and Control publishes timely research articles, full-length/ mini reviews and communications on these three strongly related areas, with emphasis on networked control systems whose sensors are interconnected via wireless communication networks. The emergence of high speed wireless network technologies allows a cluster of devices to be linked together economically to form a distributed system. Wireless communication is playing an increasingly important role in such distributed systems. Transmitting sensor measurements and control commands over wireless links allows rapid deployment, flexible installation, fully mobile operation and prevents the cable wear and tear problem in industrial automation, healthcare and environmental assessment. Wireless networked systems has raised and continues to raise fundamental challenges in the fields of science, engineering and industrial applications, hence, more new modelling techniques, problem formulations and solutions are required.
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