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Random access protocol for collision avoidance in cellular device-to-device communication

机译:蜂窝设备到设备通信中避免冲突的随机访问协议

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In this paper, we propose a fully-distributed random access protocol for the device-to-device (D2D) communications in a cellular network. Recently, numerous resource allocation schemes have been proposed to tackle the problem of excessive interference caused by D2D links (i.e., a direct communication link between devices). However, most of the existing resource allocation schemes are centralized, which incurs substantial communication and computational overhead. To overcome the difficulty, this paper proposes a fully-distributed D2D communication protocol for collision avoidance. To protect a D2D receiver, the proposed protocol creates an exclusion region around the D2D receiver, where interferers are prohibited from transmitting a signal. We analyze the proposed protocol by assuming that the locations of devices follow a Poisson point process. By simulation, we show that the analysis results accurately match the simulation results and that the proposed protocol outperforms a slotted ALOHA scheme by a very wide margin.
机译:在本文中,我们为蜂窝网络中的设备到设备(D2D)通信提出了一种完全分布式的随机访问协议。最近,已经提出了许多资源分配方案来解决由D2D链路(即,设备之间的直接通信链路)引起的过度干扰的问题。但是,大多数现有资源分配方案都是集中式的,这会导致大量的通信和计算开销。为了克服这一困难,本文提出了一种用于避免碰撞的全分布式D2D通信协议。为了保护D2D接收器,建议的协议在D2D接收器周围创建一个排除区域,禁止干扰源发送信号。我们通过假设设备的位置遵循泊松点过程来分析提出的协议。通过仿真,我们表明分析结果与仿真结果准确匹配,并且所提出的协议在很大的程度上优于时隙化的ALOHA方案。

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