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Adaptation of AMO-FBMC-OQAM in optical access network for accommodating asynchronous multiple access in OFDM based uplink transmission

机译:AMO-FBMC-OQAM在光接入网中的适配,以适应基于OFDM的上行链路传输中的异步多址

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Exponentially expanding various applications in company with proliferation of mobile devices make mobile traffic exploded annually. For future access network, bandwidth efficient and asynchronous signals converged transmission technique is required in optical network to meet a huge bandwidth demand, while integrating various services and satisfying multiple access in perceived network resource. Orthogonal frequency division multiplexing (OFDM) is highly bandwidth efficient parallel transmission technique based on orthogonal subcarriers. OFDM has been widely studied in wired-Avireless communication and became a Long term evolution (LTE) standard. Consequently, OFDM also has been actively researched in optical network. However, OFDM is vulnerable frequency and phase offset essentially because of its sine-shaped side lobes, therefore tight synchronism is necessary to maintain orthogonality. Moreover, redundant cyclic prefix (CP) is required in dispersive channel. Additionally, side lobes act as interference among users in multiple access. Thus, it practically hinders from supporting integration of various services and multiple access based on OFDM optical transmission In this paper, adaptively modulated optical filter bank multicarrier system with offset QAM (AMO-FBMC-OQAM) is introduced and experimentally investigated in uplink optical transmission to relax multiple access interference (MAI), while improving bandwidth efficiency. Side lobes are effectively suppressed by using FBMC, therefore the system becomes robust to path difference and imbalance among optical network units (ONUs), which increase bandwidth efficiency by reducing redundancy. In comparison with OFDM, a signal performance and an efficiency of frequency utilization are improved in the same experimental condition. It enables optical network to effectively support heterogeneous services and multiple access.
机译:随着移动设备的激增,公司的各种应用程序呈指数增长,使移动流量每年呈爆炸式增长。对于未来的接入网络,光网络需要带宽高效且异步信号融合的传输技术,以满足巨大的带宽需求,同时在感知的网络资源中集成各种服务并满足多路访问。正交频分复用(OFDM)是基于正交子载波的高带宽高效并行传输技术。 OFDM已在无绳有线通信中得到广泛研究,并已成为长期演进(LTE)标准。因此,OFDM也在光网络中得到了积极的研究。但是,OFDM实质上由于其正弦形旁瓣而容易受到频率和相位偏移的影响,因此需要严格的同步来保持正交性。此外,在色散信道中需要冗余循环前缀(CP)。另外,旁瓣在多路访问中充当用户之间的干扰。因此,它实际上阻碍了基于OFDM光传输支持各种服务的集成和多址接入。本文介绍了具有偏移QAM的自适应调制光滤波器组多载波系统(AMO-FBMC-OQAM),并在上行光传输中进行了实验研究。放松多址干扰(MAI),同时提高带宽效率。使用FBMC可以有效抑制旁瓣,因此该系统对于光网络单元(ONU)之间的路径差异和不平衡变得鲁棒,从而通过减少冗余来提高带宽效率。与OFDM相比,在相同的实验条件下,信号性能和频率利用效率得到了提高。它使光网络能够有效地支持异构服务和多路访问。

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