论文标题

MMTC的迭代列表检测和解码

Iterative List Detection and Decoding for mMTC

论文作者

Di Renna, R. B., de Lamare, R. C.

论文摘要

大型机器型通信(MMTC)的主要挑战是设备的关节活动和信号检测。 MMTC方案带有许多设备以低数据速率传输数据,并且通过非常短的数据包可以将其建模作为稀疏信号处理问题。在这项工作中,我们考虑了一个无赠款系统,并提出了一个共同检测设备活动和信号的检测和解码方案。所提出的方案由列表检测技术,$ L_0 $ norm正则活动感知递归最小二乘算法以及利用设备活动概率的迭代检测和解码方法(IDD)方法组成。特别是,提出的列表检测技术使用两种候选列表方案来增强检测性能。我们还将提出的列表检测技术纳入了基于低密度平等检查代码的IDD方案。我们得出了上行链路总数表达式,这些表达式考虑了每个用户的元数据碰撞,干扰和可变活动概率。计算复杂性分析表明,所提出的列表检测器与现有检测器不需要额外的复杂性,而多样性分析讨论了其多样性顺序。模拟表明,所提出的方案获得的性能优于现有的次优探测器,并靠近Oracle LMMSE检测器。

The main challenge of massive machine-type communications (mMTC) is the joint activity and signal detection of devices. The mMTC scenario with many devices transmitting data intermittently at low data rates and via very short packets enables its modelling as a sparse signal processing problem. In this work, we consider a grant-free system and propose a detection and decoding scheme that jointly detects activity and signals of devices. The proposed scheme consists of a list detection technique, an $l_0$-norm regularized activity-aware recursive least-squares algorithm, and an iterative detection and decoding (IDD) approach that exploits the device activity probability. In particular, the proposed list detection technique uses two candidate-list schemes to enhance the detection performance. We also incorporate the proposed list detection technique into an IDD scheme based on low-density parity-check codes. We derive uplink sum-rate expressions that take into account metadata collisions, interference and a variable activity probability for each user. A computational complexity analysis shows that the proposed list detector does not require a significant additional complexity over existing detectors, whereas a diversity analysis discusses its diversity order. Simulations show that the proposed scheme obtains a performance superior to existing suboptimal detectors and close to the oracle LMMSE detector.

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