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A Fast and Reliable Broadcast Service for LTE-Advanced Exploiting Multihop Device-to-Device Transmissions

机译:用于LTE先进技术的快速可靠的广播服务,可利用多跳设备到设备的传输

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摘要

Several applications, from the Internet of Things for smart cities to those for vehicular networks, need fast and reliable proximity-based broadcast communications, i.e., the ability to reach all peers in a geographical neighborhood around the originator of a message, as well as ubiquitous connectivity. In this paper, we point out the inherent limitations of the LTE (Long-Term Evolution) cellular network, which make it difficult, if possible at all, to engineer such a service using traditional infrastructure-based communications. We argue, instead, that network-controlled device-to-device (D2D) communications, relayed in a multihop fashion, can efficiently support this service. To substantiate the above claim, we design a proximity-based broadcast service which exploits multihop D2D. We discuss the relevant issues both at the UE (User Equipment), which has to run applications, and within the network (i.e., at the eNodeBs), where suitable resource allocation schemes have to be enforced. We evaluate the performance of a multihop D2D broadcasting using system-level simulations, and demonstrate that it is fast, reliable and economical from a resource consumption standpoint.
机译:从智能城市的物联网到车载网络的数种应用,都需要快速,可靠的基于邻近性的广播通信,即具有在消息始发者周围的地理区域中到达所有对等方的能力,以及无处不在的能力。连接性。在本文中,我们指出了LTE(长期演进)蜂窝网络的固有局限性,这使得,即使有可能,也很难使用传统的基于基础架构的通信来设计此类服务。相反,我们认为,以多跳方式中继的网络控制的设备到设备(D2D)通信可以有效地支持此服务。为了证实上述主张,我们设计了一种利用多跳D2D的基于邻近性的广播服务。我们在必须运行应用程序的UE(用户设备)和必须实施合适的资源分配方案的网络(即eNodeB)中讨论相关问题。我们使用系统级仿真评估多跳D2D广播的性能,并从资源消耗的角度证明它是快速,可靠和经济的。

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