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Tandem Spreading Multiple Access with Successive Interference Cancellation

机译:具有连续干扰消除的串联扩展多址

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Grant-free non-orthogonal multiple access (NOMA) is adopted to serve massive machine-type devices in massive machine-type communications (mMTC). One major challenge of the grant-free NOMA for mMTC is the collision induced by nonorthogonal resource allocation. A grant-free NOMA technique named tandem spreading multiple access (TSMA) is proposed to address this challenge. However, the system performance of TSMA could degrade due to multiple access interference when the active user number exceeds required threshold. In this paper, successive interference cancellation (SIC) is introduced in TSMA to mitigate the corresponding interference. The advantage of the combination is to enable more active users decodable by SIC. The simulation results show that TSMA maintains a high collision-resolution probability by adopting SIC even if the predefined condition of successful detection is violated.
机译:在大型机器类型通信(mMTC)中,采用了无授权非正交多址访问(NOMA)为大型机器类型设备提供服务。对于mMTC,无赠款NOMA的一大挑战是非正交资源分配引起的冲突。为解决这一挑战,提出了一种名为串联扩展多路访问(TSMA)的无赠予NOMA技术。但是,当活动用户数超过所需阈值时,由于多路访问干扰,TSMA的系统性能可能会降低。本文在TSMA中引入了连续干扰消除(SIC)以减轻相应的干扰。组合的优点是使SIC可以解码更多活跃的用户。仿真结果表明,即使违反了成功检测的预定条件,TSMA也可以通过采用SIC来保持较高的冲突解决概率。

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