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首页> 外文期刊>Quality Control, Transactions >Multiple Access Noise Compensation in CO-OFDMA-PON Uplink Transmission Using Digital Phase Conjugated-Pilot Tones
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Multiple Access Noise Compensation in CO-OFDMA-PON Uplink Transmission Using Digital Phase Conjugated-Pilot Tones

机译:使用数字相位共轭导频音调的多址噪声补偿中的CO-OFDMA-PON上行链路传输

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摘要

In coherent orthogonal frequency division multiple accessing technique-based passive optical network (CO-OFDMA-PON) uplink transmission, two main multiple-access noises (MNs), which are multiple- state-of-polarization leakages (SOPLs) and phase noises (PNs) inevitably occur by various optical network units (ONUs) and interfere with the uplink signal in this system. These MNs are different by optical devices and paths of each ONU. In this regard, parallel MNs handling per ONU is necessary to provide uplink service. We propose digital phase conjugated pilot-tones (DPC-PTs) based MNs compensation technique. This can deal with MNs by using superposition of two adjacent pilot subcarriers. In the experiments conducted, we applied a pair of DPC-PTs per ONU to handle two MNs and performed parallel processing for each ONU. The transmission performance in terms of root-mean-square error, error-vector magnitude, bit-error-rate (BER), and the overhead of redundant PTs was improved by using the proposed technique in 20-km CO-OFDMA-PON uplink transmission. Both MNs were effectively compensated by comparing transmitted and received DPC-PTs. Minimum overhead of 0.39 & x0025; OFDMA symbol duration was verified to meet BER target in the given transmission condition. It guarantees more accurate tracking of SOPL than single-PT-based one due to the doubled number of estimator samples. Besides, more accurate tracking of PNs is demonstrated due to lower noise level between DPC-PTs. As a result, applicability to the phase and polarization diversities-based coherent multiple access is demonstrated through the proposed MNs tracking technique.
机译:在相干正交频分多访问技术的基于技术的无源光网络(Co-OFDMA-PON)上行链路传输中,两个主要多址噪声(MNS),其是多个偏振泄漏(S11)和相位噪声( PNS)不可避免地由各种光网络单元(ONU)发生并干扰该系统中的上行链路信号。这些MN由每个ONU的光学装置和路径不同。在这方面,需要每个ONU的并行MNS处理以提供上行链路服务。我们提出基于数字相位共轭的导频(DPC-PT)的MNS补偿技术。这可以通过使用两个相邻的导频子载波的叠加来处理MN。在进行的实验中,我们施加了一对ONU处理两个MN,并对每个ONU进行并行处理。通过在20公路Co-OFDMA-PON上行链路中使用所提出的技术,通过使用所提出的技术来提高了根均方误差,误差矢量幅度,误码率(BER)和冗余PTS的开销的传输性能。传播。通过比较传输和接收的DPC-PTS,有效地补偿了两个MNS。最小开销0.39&x0025;在给定的传输条件下验证了OFDMA符号持续时间以满足BER目标。由于估计器样本的双倍数量增加,它可以保证比单PT的SOPL更准确地跟踪SOPL。此外,由于DPC-PTS之间的噪声水平较低,因此对PNS进行更准确的跟踪。结果,通过所提出的MNS跟踪技术证明了对基于阶段和偏振分集的相干多次访问的适用性。

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