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摘要

第三代合作伙伴计划(3GPP)为紧急情况和灾难期间的第一响应者提供通信和服务提供了必要的推动力,为关键任务推通(MCPTT)设备到设备通信提供了必要的推动力。该技术在利用第五代(5G)基础设施和服务的关键任务通信方面具有优势和大量潜在用例。由于3GPP规定了严格的关键性能指标,5G中设备到设备(D2D)通信的实现提供了必要的低延迟,并且通过改变系统模型和参数来实现。本文综述了关键任务设备间通信的研究进展。本文讨论了四种不同情况下的系统模型,包括操作员和基站辅助链路或设备之间的专用通信设置。推导了信噪比和系统率计算的数学表达式。利用瑞利衰落结合路径损失模型对D2D和蜂窝用户在不同场景下的信噪比进行了仿真分析。分析表明,与蜂窝通信相比,D2D通信在某些情况下提供更高的信噪比。具体来说,当两个附近的设备使用D2D通信时,它们可以获得比通过基站通信时更高的信噪比。对于距离较远的设备,由于D2D用户的共信道干扰增加,蜂窝设备的信噪比性能更好。
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Performance of Mission Critical Device To Device Communication in Rayleigh Fading Channel
Mission Critical Push To Talk (MCPTT) Device to Device Communication has been accorded necessary impetus by Third Generation Partnership Project (3GPP) for provisioning of communication and services to first responders during emergencies and catastrophes. The technology has advantages and large number of potential use cases for mission critical communication utilizing Fifth Generation (5G) infrastructure and services. The implementation of device to device (D2D) communication in 5G provides necessary low latency due to stringent key performance indicators specified by 3GPP and is achieved with changed system models and parameters. This paper reviews the advancements in mission critical device to device communication. System models for four different cases with operator and base station assisted links or dedicated communication setup between device has been discussed in paper. The mathematical expressions of signal to Noise ratio and system rate calculation have been derived. Simulation and analysis of SNR of D2D and cellular users under different scenarios with Rayleigh fading incorporating path loss model has been achieved. Analysis shows that D2D communication provides higher SNR in certain scenarios compared to cellular communication. Specifically, when two nearby devices communicate using D2D, they can achieve higher SNR than when they communicate through the base station. For devices at larger distances the SNR performance of cellular devices is better due to increased co channel interference in case of D2D users.
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