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Towards Reliable Communication in LTE-A Connected Heterogeneous Machine to Machine Network

机译:在LTE-A异构机器对机器网络中实现可靠通信

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摘要

Machine to machine (M2M) communication is an emerging technology that enables heterogeneous devices to communicate with each other without human intervention and thus forming so-called Internet of Things (IoTs). Wireless cellular networks (WCNs) play a significant role in the successful deployment of M2M communication. Specially the ongoing massive deployment of long term evolution advanced (LTE-A) makes it possible to establish machine type communication (MTC) in most urban and remote areas, and by using LTE-A backhaul network, a seamless network communication is being established between MTC-devices and -applications. However, the extensive network coverage does not ensure a successful implementation of M2M communication in the LTE-A, and therefore there are still some challenges.;Energy efficient reliable transmission is perhaps the most compelling demand for various M2M applications. Among the factors affecting reliability of M2M communication are the high endto- end delay and high bit error rate. The objective of the thesis is to provide reliable M2M communication in LTE-A network. In this aim, to alleviate the signalling congestion on air interface and efficient data aggregation we consider a cluster based architecture where the MTC devices are grouped into number of clusters and traffics are forwarded through some special nodes called cluster heads (CHs) to the base station (BS) using single or multi-hop transmissions. In many deployment scenarios, some machines are allowed to move and change their location in the deployment area with very low mobility. In practice, the performance of data transmission often degrades with the increase of distance between neighboring CHs. CH needs to be reselected in such cases. However, frequent re-selection of CHs results in counter effect on routing and reconfiguration of resource allocation associated with CH-dependent protocols. In addition, the link quality between a CH-CH and CH-BS are very often affected by various dynamic environmental factors such as heat and humidity, obstacles and RF interferences. Since CH aggregates the traffic from all cluster members, failure of the CH means that the full cluster will fail. Many solutions have been proposed to combat with error prone wireless channel such as automatic repeat request (ARQ) and multipath routing. Though the above mentioned techniques improve the communication reliability but intervene the communication efficiency. In the former scheme, the transmitter retransmits the whole packet even though the part of the packet has been received correctly and in the later one, the receiver may receive the same information from multiple paths; thus both techniques are bandwidth and energy inefficient. In addition, with retransmission, overall end to end delay may exceed the maximum allowable delay budget.;Based on the aforementioned observations, we identify CH-to-CH channel is one of the bottlenecks to provide reliable communication in cluster based multihop M2M network and present a full solution to support fountain coded cooperative communications. Our solution covers many aspects from relay selection to cooperative formation to meet the user's QoS requirements. In the first part of the thesis, we first design a rateless-coded-incremental-relay selection (RCIRS) algorithm based on greedy techniques to guarantee the required data rate with a minimum cost. After that, we develop fountain coded cooperative communication protocols to facilitate the data transmission between two neighbor CHs. In the second part, we propose joint network and fountain coding schemes for reliable communication. Through coupling channel coding and network coding simultaneously in the physical layer, joint network and fountain coding schemes efficiently exploit the redundancy of both codes and effectively combat the detrimental effect of fading conditions in wireless channels. In the proposed scheme, after correctly decoding the information from different sources, a relay node applies network and fountain coding on the received signals and then transmits to the destination in a single transmission. Therefore, the proposed schemes exploit the diversity and coding gain to improve the system performance. In the third part, we focus on the reliable uplink transmission between CHs and BS where CHs transmit to BS directly or with the help of the LTE-A relay nodes (RN). We investigate both type-I and type-II enhanced LTE-A networks and propose a set of joint network and fountain coding schemes to enhance the link robustness.;Finally, the proposed solutions are evaluated through extensive numerical simulations and the numerical results are presented to provide a comparison with the related works found in the literature.
机译:机器对机器(M2M)通信是一种新兴技术,使异类设备无需人工干预即可相互通信,从而形成了所谓的物联网(IoT)。无线蜂窝网络(WCN)在成功部署M2M通信中起着重要作用。特别是正在进行的长期高级演进(LTE-A)大规模部署使在大多数城市和偏远地区建立机器类型通信(MTC)成为可能,并且通过使用LTE-A回传网络,正在建立之间的无缝网络通信。 MTC设备和应用程序。但是,广泛的网络覆盖范围并不能确保LTE-A中M2M通信的成功实施,因此仍然存在一些挑战。高效节能的可靠传输可能是各种M2M应用最迫切的需求。影响M2M通信可靠性的因素包括较高的端到端延迟和较高的误码率。本文的目的是在LTE-A网络中提供可靠的M2M通信。在此目标中,为了减轻空中接口上的信令拥塞和有效的数据聚合,我们考虑基于集群的体系结构,在该体系结构中,MTC设备被分组为多个集群,并且流量通过称为集群头(CH)的一些特殊节点转发到基站(BS)使用单跳或多跳传输。在许多部署方案中,允许某些计算机以非常低的移动性在部署区域中移动和更改其位置。实际上,数据传输的性能通常会随着相邻CH之间距离的增加而降低。在这种情况下,需要重新选择CH。但是,频繁重新选择CH会对与依赖CH的协议相关联的资源分配的路由和重新配置产生反作用。此外,CH-CH和CH-BS之间的链路质量通常会受到各种动态环境因素的影响,例如热量和湿度,障碍物和RF干扰。由于CH聚合了所有群集成员的流量,因此CH发生故障意味着整个群集将发生故障。已经提出了许多解决方案来解决容易出错的无线信道,例如自动重复请求(ARQ)和多径路由。尽管上述技术提高了通信可靠性,但是干扰了通信效率。在前一种方案中,即使部分数据包已正确接收,发送方仍会重发整个数据包;在后一种方案中,接收方可能会从多条路径接收相同的信息;因此,这两种技术都是带宽和能源效率低下的。此外,通过重传,总的端到端延迟可能会超过最大允许的延迟预算。基于上述观察,我们确定CH-to-CH信道是在基于集群的多跳M2M网络中提供可靠通信的瓶颈之一,并且提供支持喷泉编码协作通信的完整解决方案。我们的解决方案涵盖了从中继选择到合作形成的许多方面,以满足用户的QoS要求。在论文的第一部分,我们首先设计了一种基于贪婪技术的无速率编码增量中继选择(RCIRS)算法,以最小的成本保证所需的数据速率。之后,我们开发了喷泉编码的协作通信协议,以促进两个相邻CH之间的数据传输。在第二部分中,我们提出了用于可靠通信的联合网络和喷泉编码方案。通过在物理层中同时耦合信道编码和网络编码,联合网络和喷泉编码方案可以有效地利用两个编码的冗余,并有效地应对无线信道中衰落条件的不利影响。在提出的方案中,在正确解码来自不同来源的信息之后,中继节点对接收到的信号应用网络和喷泉编码,然后以单次传输的方式传输到目的地。因此,提出的方案利用分集和编码增益来提高系统性能。在第三部分中,我们重点介绍CH与BS之间可靠的上行链路传输,其中CH直接或借助LTE-A中继节点(RN)向BS发送。我们研究了I型和II型增强型LTE-A网络,并提出了一套联合网络和喷泉编码方案以增强链路的鲁棒性。最后,通过大量的数值模拟对提出的解决方案进行了评估,并给出了数值结果与文献中的相关作品进行比较。

著录项

  • 作者

    Nessa, Ahasanun.;

  • 作者单位

    Ecole de Technologie Superieure (Canada).;

  • 授予单位 Ecole de Technologie Superieure (Canada).;
  • 学科 Electrical engineering.
  • 学位 D.Eng.
  • 年度 2017
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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