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A Two-phase Transmission Protocol Design for Ultra-reliable Communications

机译:超可靠通信的两阶段传输协议设计

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The emergence of the fifth generation (5G) wireless communications promotes the development of machine-type communication (MTC), which emphasizes on the ultra-reliable and low latency communications. In order to meet such requirements and considering the hierarchical network architecture in industrial scene, in this paper, we propose a novel two-phase transmission protocol based on the clustered device-to-device (D2D) networks, so that in industrial automation, the downlink transmissions of control information could reach the reliability as high as possible within 1ms. Employing the diversity gain through multi-user beam forming in Phase I and the time-division multiple-access (TDMA) fashion in Phase II, both the power consumption and reliability metrics are targeted. Simulation results show that the proposed transmission protocol realizes the ultra-reliable communications within the delay requirement, and advances comparing with the existing schemes to some extent.
机译:第五代(5G)无线通信的出现促进了机器类型通信(MTC)的发展,该技术着重于超可靠和低延迟的通信。为了满足这些要求并考虑工业场景中的分层网络架构,本文提出了一种基于集群式设备到设备(D2D)网络的新型两阶段传输协议,从而在工业自动化中,控制信息的下行链路传输可以在1ms内达到尽可能高的可靠性。利用阶段I中通过多用户波束形成的分集增益以及阶段II中通过时分多址(TDMA)方式,可以同时实现功耗和可靠性指标。仿真结果表明,所提出的传输协议可以在时延要求内实现超可靠的通信,并在一定程度上与现有方案进行了比较。

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