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Compressed sensing based ACK feedback for grant-free uplink data transmission in 5G mMTC

机译:基于压缩感知的ACK反馈,用于5G mMTC中的无授权上行链路数据传输

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One of the three 5G key usage scenarios is massive machine type communication (mMTC), which is characterized by a very large number of connected devices typically transmitting a relatively low volume of non-delay sensitive data. To support the above mMTC communication, grant-free data transmission (GFDT) has been proposed, where mMTC devices have no dedicated transmission resource. One of the challenges faced by GFDT is to ensure the communication reliability, which can be enhanced by efficient acknowledgement (ACK) feedback. By exploiting the sparsity of user activity in mMTC, this paper proposes a compressed sensing based ACK feedback (CSAF) scheme for GFDT, to reduce the feedback signaling overhead. Furthermore, we propose a new CS recovery algorithm, named as regularized approximate message passing (RAMP), to improve the detection performance of CSAF in low SNR scenario. Simulation results show that, compared with the traditional method, the proposed CSAF scheme with the proposed RAMP algorithm reduces the feedback signaling overhead by up to 75.6% and has up to 3dB detection performance gain.
机译:三种5G关键使用场景之一是大规模机器类型通信(mMTC),其特征是大量连接的设备通常传输相对少量的非延迟敏感数据。为了支持以上的mMTC通信,已经提出了无授权数据传输(GFDT),其中,mMTC设备没有专用的传输资源。 GFDT面临的挑战之一是确保通信可靠性,这可以通过有效的确认(ACK)反馈来增强。通过利用mMTC中用户活动的稀疏性,本文针对GFDT提出了一种基于压缩感知的ACK反馈(CSAF)方案,以减少反馈信令开销。此外,我们提出了一种新的CS恢复算法,称为正则化近似消息传递(RAMP),以提高CSAF在低SNR情况下的检测性能。仿真结果表明,与传统方法相比,提出的CSAF方案和提出的RAMP算法可将反馈信令开销减少多达75.6%,并具有高达3dB的检测性能增益。

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