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IEEE 802.11-based one-hop broadcast communications

机译:基于IEEE 802.11的单跳广播通信

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In wireless one-hop broadcast communications, each node broadcasts messages to inform all neighbors within an intended communication range. Clearly, the packet transmission of the various nodes might interfere with each other due to the overlapping communication ranges. IEEE 802.11 Distributed Coordination Function (DCF) provides some basic mechanisms for coordination of these transmissions. However, due to its distributed nature, DCF suffers from coordination failures, e.g., due to the very well-known hidden terminal problem. When considering realistic radio propagation phenomena to various degrees, these 'incoordination problems' can drastically increase. On the other hand, transceivers with packet capturing capability might be able to deal with some of the uncoordinated packets. In order to understand the effects of different radio propagation environments on packet level incoordination, we provide a detailed simulation study measuring six transmission success/failure categories and five performance metrics. We report quantitative results w.r.t. probability of incoordination and the effects of power-setting and packet retransmission strategies.
机译:在无线单跳广播通信中,每个节点都广播消息以通知预期通信范围内的所有邻居。显然,由于重叠的通信范围,各个节点的数据包传输可能会相互干扰。 IEEE 802.11分布式协调功能(DCF)提供了一些用于协调这些传输的基本机制。但是,由于其分散的性质,DCF例如由于众所周知的隐藏终端问题而遭受协调失败。当考虑各种程度的现实无线电传播现象时,这些“不协调问题”会急剧增加。另一方面,具有数据包捕获功能的收发器可能能够处理一些未协调的数据包。为了了解不同无线电传播环境对分组级别不协调的影响,我们提供了详细的仿真研究,该研究测量了六个传输成功/失败类别和五个性能指标。我们报告定量结果不协调的可能性以及功率设置和数据包重传策略的影响。

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