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Performance of Non-orthogonal Multiple Access With a Novel Asynchronous Interference Cancellation Technique

机译:新型异步干扰消除技术的非正交多址性能

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The non-orthogonal multiple access (NOMA) allows one subcarrier to be allocated to more than one user at the same time in an orthogonal frequency division multiplexing (OFDM) system. NOMA is a promising technique to provide high throughput due to frequency reuse within a cell. In this paper, a novel interference cancellation (IC) technique is proposed for asynchronous NOMA systems. The proposed IC technique exploits a triangular pattern to perform the IC from all interfering users for the desired user. The bit error rate and the capacity performance analysis of an uplink NOMA system with the proposed IC technique are presented, along with the comparison to orthogonal frequency division multiple access (OFDMA) systems. The numerical and simulation results show that the NOMA with the proposed asynchronous IC technique outperforms the OFDMA. It is also shown that employing iterative IC provides significant performance gain for NOMA and the number of required iterations depends on the modulation level and the detection method. With hard decision, two iterations are sufficient, and however, with soft decision, two iterations are enough only for low modulation level, and more iterations are desirable for high modulation level.
机译:在正交频分复用(OFDM)系统中,非正交多址(NOMA)允许将一个子载波同时分配给一个以上的用户。由于小区内的频率复用,NOMA是一种提供高吞吐量的有前途的技术。本文提出了一种针对异步NOMA系统的新型干扰消除(IC)技术。所提出的IC技术利用三角形图案来从所有干扰用户对期望用户执行IC。提出了采用所提出的IC技术的上行NOMA系统的误码率和容量性能分析,并与正交频分多址(OFDMA)系统进行了比较。数值和仿真结果表明,采用异步IC技术的NOMA优于OFDMA。还显示出采用迭代IC为NOMA提供了显着的性能增益,所需的迭代次数取决于调制级别和​​检测方法。对于硬判决,两个迭代就足够了,但是,对于软判决,仅对于低调制级别,两个迭代就足够了,而对于高调制级别,则需要更多的迭代。

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