利用 ASK 调制为无线通信系统设计基于混沌的光纤数字无线电传输链路

Q2 Engineering
Vu Anh Dao, Tran Tri Thanh Thuy, Vo Nguyen Quoc Bao, Truong Cao Dung, N. X. Quyen
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引用次数: 0

摘要

安全的宽带无线电通信在无线电接入网络的高速连接中正变得越来越重要,在移动信息系统和无线物联网连接中发挥着至关重要的作用。本文介绍了一种利用光纤无线电传输技术的基于混沌的双通道数字无线电通信系统。该系统包括两个运行速度高达 1 Gbps 的无线电信道,使用幅度移动键控(ASK)调制,然后使用混沌序列调制,最后使用 MZM 调制器转换到光域。为补偿光纤损耗,系统采用了掺铒光纤放大器(EDFA),并通过标准 ITU-G.655 光纤进行光链路。使用商业化仿真软件 Optisystem V.15 对所设计的系统进行了数值仿真,以评估和鉴定传输性能。结果表明,该系统能在光纤传输距离达 110 千米的情况下在两个信道上有效运行,误码率保持在 10-9 以下。这一特性确保了高速无线电连接的可靠性能,特别是在云无线接入和无线传感器网络连接的前端网络等应用中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of A Chaos-based Digital Radio over Fiber Transmission Link using ASK Modulation for Wireless Communication Systems
Secured broadband radio communications are becoming increasingly pivotal for high-speed connectivity in radio access networks, playing a crucial role in both mobile information systems and wireless IoT connections. This paper introduces a chaos-based two-channel digital radio communication system utilizing fiber optic radio transmission technology. The system comprises two radio channels operating at up to 1 Gbps using amplitude shift keying (ASK) modulation, followed by modulation with a chaotic sequence before conversion to the optical domain using the MZM modulator. To compensate for fiber loss, the system utilizes an Erbium Doped Fiber Amplifier (EDFA) and employs the optical links through standard ITU-G.655 optical fibers. Numerical simulation of the designed system is performed using the commercialized simulation software Optisystem V.15 to assess and characterize transmission performance. The results demonstrate the system’s effective operation on two channels with a fiber transmission distance of up to 110 km, maintaining a bit error ratio of less than 10−9. This feature ensures reliable performance for high-speed radio connections, particularly in applications such as fronthaul networks in cloud radio access and wireless sensor network connections.
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来源期刊
CiteScore
4.00
自引率
0.00%
发文量
15
审稿时长
10 weeks
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