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Error Analysis of NOMA-Based VLC Systems With Higher Order Modulation Schemes

机译:高阶调制方案的基于NOMA的VLC系统的误差分析

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Nonorthogonal multiple access (NOMA) is a technique with high spectral efficiency that is expected to be applied in future wireless networks. However, its high spectral efficiency comes at the expense of increased error in data detection. This paper presents theoretical error analysis of a downlink power-domain NOMA-based visible light communication (VLC) system with higher order modulation schemes in which the scenario of imperfect successive interference cancellation (SIC) is considered. Exact closed-form expressions for the symbol error rates (SERs) of the users are derived when the modulation is the square quadrature amplitude modulation (QAM). The derived expressions are applicable to any modulation order of each user. In addition, a necessary and sufficient power allocation (PA) constraint is provided for NOMA with higher order modulation to ensure that the decision regions of the symbols in the superimposed constellation do not intersect or overlap. The simulation results support the theoretical analysis and the accuracy of the derived expressions. The results demonstrate that the user SER in NOMA-based systems can be minimized with a suitable PA that depends on the modulation orders of the users.
机译:非正交多次访问(NOMA)是具有高光谱效率的技术,该技术预计将应用于未来的无线网络。然而,其高光谱效率为数据检测中的误差增加。本文介绍了具有高阶调制方案的下行链路功率域NOMA的可见光通信(VLC)系统的理论误差分析,其中考虑了不完全连续干扰消除(SIC)的方案。当调制是平方正交幅度调制(QAM)时导出用户的符号错误率(SERS)的确切闭合表达式。衍生的表达式适用于每个用户的任何调制顺序。另外,为具有更高阶调制的NOMM提供了必要的和足够的功率分配(PA)约束,以确保叠加星座中的符号的决定区域不相交或重叠。仿真结果支持衍生表达的理论分析和准确性。结果表明,使用合适的PA,可以最小化基于NOMA的系统中的用户SER,这取决于用户的调制令。

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