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A novel scheme for demodulation of ACO-OFDM in the presence of DC offset

机译:在直流偏移存在下解调ACO-OFDM的新方案

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摘要

Asymmetrically clipped optical orthogonal frequency division multiplexing (ACO-OFDM) has become one of the most promising technologies for high speed optical wireless communications (OWCs). However, as a key challenge, improving the demodulation performance of ACO-OFDM in practical systems has not been well addressed. Most established demodulation schemes suffer from performance degradation either due to discarding of even sub-carriers or interference of direct current (DC) offset, which is one of the most common impairments in practical OWC systems. Up to our awareness, there was only one established scheme (Dissanayake and Armstrong, 2011 [1]) that addressed ACO-OFDM demodulation in the presence of DC offset, but it requires relatively high computation efforts. To deal with the challenge, we propose a novel demodulation scheme for ACO-OFDM in this paper. By making use of the virtual clean window (VCW), we develop methods to estimate and eliminate DC offset, so that the even sub-carriers of ACO-OFDM can be explored to improve demodulation performance even in the presence of DC offset. Compared with the scheme presented in (Dissanayake and Armstrong 2011 [1]), the proposed scheme significantly reduces processing complexity. Simulation results are given to demonstrate the performance of the proposed scheme.
机译:非对称限幅的光正交频分复用(ACO-OFDM)已成为高速光无线通信(OWC)最具前景的技术之一。然而,作为关键挑战,尚未很好地解决在实际系统中改善ACO-OFDM的解调性能。大多数既定的解调方案都会由于偶数子载波的丢弃或直流(DC)偏移的干扰而导致性能下降,这是实际OWC系统中最常见的损害之一。据我们所知,只有一个已建立的方案(Dissanayake和Armstrong,2011 [1])解决了存在DC偏移的ACO-OFDM解调问题,但是它需要相对较高的计算工作量。为了应对这一挑战,本文提出了一种新颖的ACO-OFDM解调方案。通过使用虚拟净窗(VCW),我们开发了估计和消除DC偏移的方法,因此即使存在DC偏移,也可以探索ACO-OFDM的偶数子载波来提高解调性能。与(Dissanayake和Armstrong 2011 [1])中提出的方案相比,该方案显着降低了处理复杂性。仿真结果表明了该方案的性能。

著录项

  • 来源
    《Journal of the Franklin Institute》 |2015年第3期|802-812|共11页
  • 作者

    Tao Liu;

  • 作者单位

    School of Automation & Electrical Engineering, University of Science and Technology Beijing, Beijing 100083, China;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 02:57:45

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