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Performance Analysis of Time-Critical Peer-to-Peer Communications in IEEE 802.15.4 Networks

机译:IEEE 802.15.4网络中的时间关键点对对接通信的性能分析

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Existing works on the performance analysis of IEEE 802.15.4 networks with peer-to-peer (P2P) topologies assume the non-beacon unslotted mode in the MAC layer, which is not suitable for time-critical communications required by many applications, such as control, actuation and monitoring applications. In this paper, we introduce an enhanced guaranteed timeslot (GTS) mechanism which can support time-critical P2P communications in wireless sensor networks (WSNs). A Markov chain that takes into account retransmission limits, acknowledgements, unsaturated traffic and packet delivery ratios of links is proposed to model P2P communications using this enhanced GTS mechanism. Based on this model, we analyze the expected reliability and energy consumptions under various traffic conditions. In addition, the impacts of MAC parameters on these performance indexes are analyzed. Monte Carlo simulations show that our theoretical analysis is quite accurate, and thus can be used as guidance for networks configuration in WSNs.
机译:现有有关对等到对等(P2P)拓扑的IEEE 802.15.4网络性能分析的工作假设MAC层中的非信标未注释模式,这不适用于许多应用所需的时间关键通信,例如控制,驱动和监控应用。在本文中,我们介绍了一种增强的保证时隙(GTS)机制,其可以支持无线传感器网络(WSN)中的时间关键的P2P通信。建议考虑到重传限制,确认,不饱和流量和分组传递比的马尔可夫链以使用这种增强的GT机制来模拟P2P通信。基于该模型,我们在各种交通条件下分析了预期的可靠性和能量消耗。此外,分析了MAC参数对这些性能指标的影响。 Monte Carlo仿真表明,我们的理论分析非常准确,因此可以用作WSN中网络配置的指导。

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