利用 OSTBC、QAM 和 OFDM 提升 LiFi 通信性能:高容量、低复杂度收发器设计

Q3 Physics and Astronomy
Mohammed G. Al-Hamiri , Haider J. Abd
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引用次数: 0

摘要

光保真(LiFi)是无线光通信系统中最有前途的领域之一。它具有许多优点,包括高容量、更高的安全性和更高的成本效益。然而,它仍然面临着链路阻塞、衰减、干扰和调制技术带宽限制等挑战。正交时空块编码(OSTBC)通过在发射器和接收器之间提供替代通信信道,为解决链路阻塞问题提供了合适的解决方案。OSTBC 对重叠区域可能出现的衰减和干扰等实际信道影响限制有更大的容忍度。此外,使用 OSTBC 技术还能增强系统传输数据的能力,因为传输速率是由发射器和接收器的数量来复制的。本文提出利用基于 LiFi 收发器的 OSTBC,该收发器采用正交振幅调制(QAM)和正交频分复用(OFDM)技术。在设计 LiFi 收发器时,使用了 Matlab 与 Optisystem 的集成协同仿真工具以及所有必要的假设。研究结果表明,LiFi 收发器的传输速率可达 15 Gbps,在 200 米的链路范围内,即使存在现实的信道效应,误码率(BER)也能保持在 10-4 左右,令人满意。此外,与传统的 LiFi 收发器相比,所使用的 LiFi 收发器结构不包含光放大器组件,从而降低了计算复杂性。事实证明,在相同输入效应的影响下,拟议的系统比以前的工作取得了进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing the performance of LiFi communication with OSTBC, QAM, and OFDM: High-capacity, low-complexity transceiver design

Light fidelity (LiFi) is one of the most promising areas within wireless optical communication system. It provides many benefits, including high capacity, improved security and enhanced cost-effectiveness. However, there is still challenges which are link blockages, attenuation, interference and bandwidth restriction of modulation techniques. Orthogonal space–time block coding (OSTBC) offers a suitable solution to address link blockage by providing an alternative communication channel between the transmitter and the receiver. OSTBC has more tolerate to the practical channel impact limitation such as attenuation and interference that may occur in overlapping regions. In addition, the use of the OSTBC technique enhances the system’s ability to transfer data as the transmission rate is duplicated by the number of transmitters and receivers. This paper proposes the utilisation of a LiFi transceiver-based OSTBC that employs quadrature amplitude modulation (QAM) in conjunction with orthogonal frequency-division multiplexing (OFDM). Co-simulation tools have been done by integrated Matlab with Optisystem, were used in the design of LiFi transceiver with all assumption required. The findings reveal the capability of LiFi transceiver of transmitting rate up to 15 Gbps with maintaining a satisfactory bit error rate (BER) of 10−4 over a link range of 200 m even in the presence of realistic channel effects. Moreover, the LiFi transceiver’s structure used does not incorporate optical amplifier components, resulting in reduced computational complexity compared to conventional LiFi transceivers. The proposed system proved its progress over the previous work under the influence of the same input effects.

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来源期刊
Results in Optics
Results in Optics Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
2.50
自引率
0.00%
发文量
115
审稿时长
71 days
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