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首页> 外文期刊>Internet of Things Journal, IEEE >Joint Network Channel Fountain Schemes for Machine-Type Communications Over LTE-Advanced
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Joint Network Channel Fountain Schemes for Machine-Type Communications Over LTE-Advanced

机译:LTE-Advanced上用于机器类型通信的联合网络信道喷泉方案

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摘要

Machine-type communications (MTC) also known as machine-to-machine (M2M) communications over long-term evolution-advanced (LTE-A) networks with ubiquitous coverage and global Internet working is expected to constitute a significant part of the Internet of Things (IoT) paradigm. However, there are paramount challenges and active research activities to accommodate M2M communications over LTE-A network without sacrificing the quality of human-based services. Among them the performance of M2M communications in LTE advanced relay network has not been fully investigated yet. In particular, LTE/LTE-A uses turbo codes as the forward error correction (FEC) mechanism in the physical layer. Since turbo codes are fixed rate codes, an automatic repeat request (ARQ) is sent to the sender when the receiver fails to recover complete packet that results in packet failure and waste of radio resources. In this paper, to combat the detrimental effects of wireless fading channel, we propose a set of joint network and fountain coding (JNFC) schemes for reliable uplink transmission between M2M devices and evolved NodeB (eNB). Specially, we consider clustered heterogeneous M2M networks, where cluster heads (CHs) transmit to eNB directly or by the help of relays. Numerical results are presented to demonstrate the performance of the proposed schemes over type I and type II relay-enhanced LTE-A networks. It shows that in type I relay enhanced networks, JNFC with space time block codes (JNFC-STBC) outperforms the direct transmission with relays (DTRs) and in type II enhanced networks, JNFC with robust soliton distribution (JNFC-RSD) outperforms JNFC with random linear network coding (JNFC-RLNC) in a variety of metrics.
机译:通过无处不在的覆盖范围和全球互联网工作的长期演进高级(LTE-A)网络进行的机器类型通信(MTC)也称为机器对机器(M2M)通信,预计将构成互联网的重要组成部分物联网(IoT)范例。但是,在不牺牲基于人的服务质量的情况下,要通过LTE-A网络进行M2M通信面临着巨大的挑战和积极的研究活动。其中,LTE高级中继网络中M2M通信的性能尚未得到充分研究。尤其是,LTE / LTE-A在物理层中使用Turbo码作为前向纠错(FEC)机制。由于Turbo码是固定码率代码,因此当接收方无法恢复完整的数据包时,会自动向发送方发送自动重传请求(ARQ),这会导致数据包故障并浪费无线资源。在本文中,为了应对无线衰落信道的不利影响,我们提出了一套联合网络和喷泉编码(JNFC)方案,用于M2M设备与演进型NodeB(eNB)之间的可靠上行链路传输。特别是,我们考虑集群异构M2M网络,其中集群头(CH)直接或通过中继的方式传输到eNB。数值结果表明了所提出的方案在I型和II型中继增强型LTE-A网络上的性能。它表明,在I型中继增强型网络中,具有空时分组代码(JNFC-STBC)的JNFC优于具有中继器(DTR)的直接传输,而在II型增强型网络中,具有鲁棒孤子分布(JNFC-RSD)的JNFC优于JNFC。各种指标中的随机线性网络编码(JNFC-RLNC)。

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