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Context-aware Cluster Based Device-to-Device Communication to Serve Machine Type Communications

机译:基于背景信息的基于群集的设备到设备通信,用于服务机器类型通信

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Billions of Machine Type Communication (MTC) devices are foreseen to be deployed in next ten years and therefore potentially open a new market for next generation wireless network. However, MTC applications have different characteristics and requirements compared with the services provided by legacy cellular networks. For instance, an MTC device sporadically requires to transmit a small data packet containing information generated by sensors. At the same time, due to the massive deployment of MTC devices, it is inefficient to charge their batteries manually and thus a long battery life is required for MTC devices. In this sense, legacy networks designed to serve human-driven traffics in real time can not support MTC efficiently. In order to improve the availability and battery life of MTC devices, context-aware device-to-device (D2D) communication is exploited in this paper. By applying D2D communication, some MTC users can serve as relays for other MTC users who experience bad channel conditions. Moreover, signaling schemes are also designed to enable the collection of context information and support the proposed D2D communication scheme. Last but not least, a system level simulator is implemented to evaluate the system performance of the proposed technologies and a large performance gain is shown by the numerical results.
机译:预计将在未来十年部署数十亿台机器类型通信(MTC)设备,因此可能开辟了下一代无线网络的新市场。然而,与传统蜂窝网络提供的服务相比,MTC应用具有不同的特性和要求。例如,MTC设备偶尔地需要发送包含传感器生成的信息的小数据分组。同时,由于MTC器件的大规模部署,它效率低于手动对电池充电,因此MTC设备需要长的电池寿命。从这个意义上讲,旨在实时为人类驱动的流量服务的传统网络无法有效地支持MTC。为了提高MTC设备的可用性和电池寿命,本文利用了上下文感知设备到设备(D2D)通信。通过应用D2D通信,一些MTC用户可以作为中继用于体验不良信道条件的其他MTC用户。此外,信号传导方案也被设计为使得能够集合上下文信息并支持所提出的D2D通信方案。最后但并非最不重要的是,实现系统级模拟器以评估所提出的技术的系统性能,并且数值结果示出了大的性能增益。

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