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Hybrid Active User Detection for Massive Machine-type Communications in IoT

机译:物联网中大规模机器类型通信的混合主动用户检测

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Massive machine-type communication (mMTC) concerns the access of massive machine-type communication (MTC) devices to the basestation. To support the massive connectivity, non-orthogonal multiple access (NOMA) and grant-free access have been recently introduced. In grant-free access, each device transmits information without scheduling so that the basestation needs to identify the active devices among all potential devices in a cell. This process, called an active user detection (AUD), is a challenging problem for the NOMA-based systems since it is difficult to find out the active devices from the superimposed received signal. To address this problem, compressed sensing (CS) based active user detection (AUD) technique exploiting the low activity of devices in mMTC has been introduced. In this paper, we propose an AUD scheme that exploits both pilot and data measurements to improve the AUD performance in grant-free NOMA systems. The key idea is to use the common support information of pilot and data signals in a packet. Numerical results demonstrate that the proposed AUD scheme outperforms the conventional approaches in both AUD and throughput performance.
机译:大型机器类型通信(mMTC)与大型机器类型通信(MTC)设备对基站的访问有关。为了支持大规模连接,最近引入了非正交多路访问(NOMA)和无授予访问。在无授予访问中,每个设备无需调度即可发送信息,因此基站需要在小区中所有潜在设备中标识活动设备。对于基于NOMA的系统,此过程称为活动用户检测(AUD),这是一个具有挑战性的问题,因为很难从叠加的接收信号中找出活动设备。为了解决这个问题,已经引入了利用压缩通信(CS)的基于活动用户检测(AUD)的技术,该技术利用了mMTC中设备的低活动性。在本文中,我们提出了一种AUD方案,该方案可利用导频和数据测量来提高无赠款NOMA系统中的AUD性能。关键思想是在数据包中使用导频和数据信号的公共支持信息。数值结果表明,所提出的AUD方案在AUD和吞吐量性能上均优于传统方法。

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