首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Implementation of network-coding approach for improving the BER performance in non-orthogonal multiple access (NOMA)-PON
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Implementation of network-coding approach for improving the BER performance in non-orthogonal multiple access (NOMA)-PON

机译:实现网络编码方法,用于提高非正交多址(NOMA)-PON中的BER性能

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In the current passive optical networks (PONS), we address the challenge of dealing with asymmetric channel conditions and asymmetric data rates in order to meet the traffic demand of optical network unit (ONU) to ONU (020) communications. A joint network-coding (NC) and power domain non-orthogonal multiple access (NOMA) approach (NC-NOMA) is discussed. The novelty of this NC-NOMA scheme lies in the way the interONUs communicates with an optical line terminal (OLT) at different modulation formats. Specifically, in the uplink communications, at each ONU side, multiple data streams from different ONUs are superimposed into one single symbol. Meanwhile, NOMA is considered by adjusting the optical transmission power of ONUs such that the OLT can decode the signals from different ONUs based on successive interference cancellation (SIC). At the OLT side, the adding zeros approach at the specific positions of the shorter bit sequence is introduced. In the downlink communications, the ONUs obtain their own data by decoding the received messages. By applying NC-NOMA, the ONU with better channel condition only needs to demodulate the fictitious symbols with a low order modulation format instead of demodulating the symbols with a high order modulation format. The simulation results show NC-NOMA with hierarchical adding zeros approach outperforms NC-NOMA with traditional zero padding approach in terms of having lower average end-to-end BER of ONUs without having additional complexity.
机译:在当前的无源光网络(PONS)中,我们解决了处理不对称信道条件和非对称数据速率的挑战,以满足光学网络单元(ONU)的交通需求,以便ONU(020)通信。讨论了联合网络编码(NC)和功率域非正交多次访问(NC-NOMA)。该NC-NOMA方案的新颖性在于界面以不同的调制格式与光学线路终端(OLT)通信的方式。具体地,在每个ONU侧的上行通信中,从不同的ONU的多个数据流叠加到一个单个符号中。同时,通过调整ONU的光传输功率来考虑NOMA,使得OLT可以基于连续的干扰消除(SIC)来解码来自不同ONU的信号。在OLT侧,引入了在较短比特序列的特定位置的添加零方法。在下行链路通信中,ONU通过解码所接收的消息来获得自己的数据。通过应用NC-NOMM,具有更好信道条件的ONU仅需要用低阶调制格式解调虚拟符号,而不是用高阶调制格式解调符号。仿真结果显示了具有分层添加零接近的NC-NOMA,其具有传统的零填充方法的NC-NOMA,而在没有额外复杂性的情况下具有下平均终端到底BER的终端到底BER。

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