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首页> 外文期刊>IEEE Transactions on Communications >Analysis and Mitigation of Clipping Noise in Layered ACO-OFDM Based Visible Light Communication Systems
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Analysis and Mitigation of Clipping Noise in Layered ACO-OFDM Based Visible Light Communication Systems

机译:基于分层ACO-OFDM的可见光通信系统中削波噪声的分析和缓解

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摘要

Due to the limited dynamic range of the off-the-shelf electrical and optical components, deliberate digital clipping (DDC) is widely applied to optical orthogonal frequency division multiplexing (OFDM) based visible light communication systems. In this paper, we present a theoretical characterization of the layered asymmetrically clipped optical OFDM (ACO-OFDM) signals subject to peak clipping. We decouple a clipped L-layer ACO-OFDM symbol to L single-layer ACO-OFDM symbols, each corresponding to a layer, and show that these symbols are subject to symmetrical peak clippings at random levels. Using Bussgang's theorem, the resulting attenuation factors and variances of the additive noise associated with each layer are derived. It is shown that the clipping noise caused by the DDC mainly falls onto the first layer, and its impact is gradually reduced in the subsequent layers. In order to combat the clipping noise, a novel receiver based on decision aided reconstruction is proposed. Simulation results show that the proposed receiver can effectively mitigate the clipping noise, leading to significant improvement of bit error rates over the conventional receiver.
机译:由于现成的电气和光学组件的动态范围有限,故意数字削波(DDC)被广泛应用于基于光学正交频分复用(OFDM)的可见光通信系统。在本文中,我们介绍了经受峰值削波的分层非对称削波光学OFDM(ACO-OFDM)信号的理论特性。我们将削波的L层ACO-OFDM符号解耦为L个单层ACO-OFDM符号,每个符号对应于一个层,并表明这些符号在随机级别上受到对称峰值削波的影响。使用Bussgang定理,可以推导得到的衰减因子和与每一层相关的附加噪声的方差。结果表明,由DDC引起的削波噪声主要落在第一层,其影响在随后的层中逐渐减小。为了克服削波噪声,提出了一种基于决策辅助重构的新型接收机。仿真结果表明,所提出的接收器可以有效地减轻削波噪声,与传统接收器相比,可以显着提高误码率。

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