Performance analysis of digitized multicarrier system for optical wireless communication

T. Deepa, T. Rao, Harshita Mathur, P. Srivstava, B. Abe
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引用次数: 2

Abstract

Optical wireless communication (OWC) in the infrared and visible range is an appealing technology, principally in environment arenas where radio communication encounters difficulties. One o f the most important subdivisions of OWC technology is the visible light communication (VLC) that uses visible light (VL) between the range 400 and 800 THz. VLC uses intensity modulation/direct detection (IM/DD). Hence the signals ought to be strictly real valued positive sequence. The fundamental modulation techniques such as on-off keying (OOK) and Pulse Position Modulation (PPM) are in accordance with existing constara current tight emitting diode (LED) drivers, however it comes with one drawback of having low spectral efficiency and restricted feasible data rates of VLC. Orthogonalfrequency-division multiplexing (OFDM) is one of the superior techniques that encode digital data on to multiple carrier frequencies and is widely known for providing high spectral efficiency. Despite of these advantages it comes with the disadvantage of high peak to average power ratio (PAPR) besides complicated Digital-to-Analog converter (DAC) and modification of LED drivers of VLC system being pre-requisite. Ln this paper, we present Delta-Sigma modulation (DSM) based OFDM which offers excellent robustness against noises and nonlinear distortions in VLC systems. The digital OFDM has been analyzed in terms of complementary cumulative distribution function (CCDF), error vector magnitude (EVM), bit error rate (BER) and received constellation diagram by means of MATLAB simulation to characterize the waveforms. Simulation results show that the DSM considerably enhances the system performance of digitized OFDM
数字化无线光通信多载波系统性能分析
在红外和可见光范围内的光无线通信(OWC)是一种吸引人的技术,主要是在无线电通信遇到困难的环境领域。OWC技术最重要的细分之一是可见光通信(VLC),它使用400到800太赫兹范围内的可见光(VL)。VLC采用强度调制/直接检测(IM/DD)。因此,信号应该是严格实值正序列。基本的调制技术,如开关键控(OOK)和脉冲位置调制(PPM)与现有的同步电流紧密发光二极管(LED)驱动器是一致的,但它有一个缺点,即频谱效率低,限制了VLC的可行数据速率。正交频分复用(OFDM)是一种将数字数据编码到多个载波频率上的优越技术,以其高频谱效率而闻名。尽管有这些优点,但缺点是峰值平均功率比(PAPR)高,并且需要复杂的数模转换器(DAC)和修改VLC系统的LED驱动器。在本文中,我们提出了基于Delta-Sigma调制(DSM)的OFDM,它在VLC系统中对噪声和非线性失真具有出色的鲁棒性。通过MATLAB仿真,从互补累积分布函数(CCDF)、误差矢量幅度(EVM)、误码率(BER)和接收星座图等方面对数字OFDM进行了分析,对波形进行了表征。仿真结果表明,DSM显著提高了数字化OFDM的系统性能
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