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Adaptive Channel Access Mechanism for Zigbee (IEEE 802.15.4)

机译:Zigbee的自适应信道访问机制(IEEE 802.15.4)

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摘要

The IEEE 802.15.4 (also known as Zigbee) is a new wireless personal area network (PAN) standard designed for wireless monitoring and control applications. The Zigbee standard is based on CSMA-CA for contention based medium access. In this paper a study of the Adaptive backoff exponent (BE) management of CSMA-CA for 802.15.4 is presented. The BEs determine the number of backoff slots that the device shall wait before accessing the channel. The power consumption requirements make CSMA-CA use fewer BEs which increase the probability of devices choosing identical BEs and as a result, wait for the same number of backoff slots in some cases. This often leads to degradation of system performance at congestion scenarios, due to higher number of collisions. This paper addresses the problem by proposing an adaptive mechanism to the current implementation of the backoff exponent management, based on a decision criterion. As a result of the implementation, potential packet collisions are reduced. The results of NS-2 simulations are presented, indicating an overall improvement in network performance.
机译:IEEE 802.15.4(也称为Zigbee)是一种设计用于无线监视和控制应用程序的新无线个人区域网(PAN)标准。 Zigbee标准基于CSMA-CA,用于基于竞争的媒体访问。本文提出了针对802.15.4的CSMA-CA自适应退避指数(BE)管理的研究。 BE确定设备在访问通道之前应等待的退避时隙数。功耗要求使CSMA-CA使用更少的BE,这增加了设备选择相同BE的可能性,因此,在某些情况下,等待相同数量的退避时隙。由于冲突数量较多,这经常导致系统在拥塞情况下的性能下降。本文通过基于决策标准为当前的退避指数管理实施提出一种自适应机制来解决该问题。作为实施的结果,减少了潜在的分组冲突。给出了NS-2仿真的结果,表明网络性能的总体提高。

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