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A Backoff Counter Reservation scheme for performance improvement in Wireless Body Area Networks

机译:用于改善无线人体局域网中性能的退避计数器预留方案

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In IEEE 802.15.4 wireless personal area networks (WPANs), reliable data transmission is highly valued for health and medical information. The channel access in IEEE 802.15.4 employs Carrier Sense Multiple Access with Collision Avoidance (CSMA). In IEEE 802.15.4 WPANs, health and medical information are expected to transmit reliably to a single central controller (i.e., coordinator). However, due to CSMA/CA, the important data that informs the patient's emergency situation of the coordinator could not be transmitted. It is because CSMA/CA impairs network efficiency. Therefore, a more effective frame transmission scheme should be proposed to provide reliable frame transmission and solve contention problems for Wireless Body Area Networks (WBANs). In this paper, based on IEEE 802.15.4, we propose a Backoff Counter Reservation (BCR) scheme. We propose that the next backoff value is added to the MAC payload of each transmitted data frame in order to the coordinator could know their future backoff duration information. If the data frame does not arrive at the predicted transmission slot, a guaranteed time slot (GTS) is allocated to the sensor in the next superframe. In this scheme, a sensor can reserve a backoff counter for next packet transmission. An analytic model and a simulation model are developed to evaluate the performance of IEEE 802.15.4 and BCR. The simulation results demonstrate that the proposed scheme significantly improves throughput, delay and collision probability. Our proposed scheme significantly outperforms IEEE 802.15.4 backoff scheme.
机译:在IEEE 802.15.4无线个人区域网(WPAN)中,可靠的数据传输对于健康和医疗信息具有很高的价值。 IEEE 802.15.4中的信道访问采用了具有冲突避免功能的载波侦听多路访问(CSMA)。在IEEE 802.15.4 WPAN中,健康和医疗信息应可靠地传输到单个中央控制器(即协调器)。但是,由于CSMA / CA,无法传输通知患者协调员紧急情况的重要数据。这是因为CSMA / CA会降低网络效率。因此,应该提出一种更有效的帧传输方案,以提供可靠的帧传输并解决无线体域网(WBAN)的竞争问题。本文基于IEEE 802.15.4,提出了一种退避计数器保留(BCR)方案。我们建议将下一个退避值添加到每个传输的数据帧的MAC有效负载中,以便协调器可以知道其未来的退避持续时间信息。如果数据帧未到达预测的传输时隙,则在下一个超帧中将保证时隙(GTS)分配给传感器。在此方案中,传感器可以为下一个数据包传输保留一个退避计数器。开发了一个分析模型和一个仿真模型来评估IEEE 802.15.4和BCR的性能。仿真结果表明,该方案显着提高了吞吐量,时延和冲突概率。我们提出的方案明显优于IEEE 802.15.4退避方案。

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