Multi-Node Confirmation Mechanism Based on PC-SCMA Superposition Transmission Systems

Teng He, Dalong Zhang, Xue Zhang, Xinxing Zheng
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Abstract

Sparse code multiple access (SCMA) can enable multiple nodes to share the same time-frequency resources, thereby effectively alleviating the problem of insufficient spectrum resource caused by multi-node access. It is a promising technology for realizing massive machine-type communication (mMTC). Aiming at the problem of large latency caused by successive replies in the traditional acknowledgment (ACK) mechanism, this paper proposes a multi-node-oriented reply mechanism, which allows single ACK frame to carry the address fields of multiple nodes to ensure real-time reply to nodes. Simulation results in the polar code SCMA (PC-SCMA) systems with hybrid automatic repeat request (HARQ) assistance show that with the proposed reply mechanism-based HARQ assistance, the block error rate (BLER) of the PC-SCMA system is less than $10\wedge(-4)$ when the Eb/N0 is 4.5 dB and the system latency can be reduced by up to 15.36%.
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基于PC-SCMA叠加传输系统的多节点确认机制
稀疏码多址(SCMA)可以使多个节点共享相同的时频资源,从而有效缓解多节点接入导致频谱资源不足的问题。它是实现大规模机器通信(mMTC)的一种很有前途的技术。针对传统的确认(ACK)机制中连续应答造成的大延迟问题,提出了一种面向多节点的应答机制,该机制允许单个ACK帧携带多个节点的地址字段,以保证对节点的实时应答。对具有混合自动重复请求(HARQ)辅助的极性码SCMA (PC-SCMA)系统的仿真结果表明,当Eb/N0为4.5 dB时,基于应答机制的HARQ辅助,PC-SCMA系统的分组错误率(BLER)小于10\wedge(-4)$,系统延迟可降低15.36%。
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