Xidian University, Xi'an, Shaanxi, China.
J Med Syst. 2011 Oct;35(5):1265-75. doi: 10.1007/s10916-011-9682-5. Epub 2011 Mar 23.
IEEE 802.15.4 technology provides one solution for low-rate short range communications. Based on the integrated superframe structure of IEEE 802.15.4, a novel low-delay traffic-adaptive medium access control (LDTA-MAC) protocol for wireless body area networks (WBANs) is proposed in the paper. In LDTA-MAC, the guaranteed time slots (GTSs) are allocated dynamically according to the traffic load. At the same time, the active portion of superframe is kept to be a reasonable duration to decrease the energy consumption of the network devices. Moreover, for the successful GTS requests, the related data packets are transmitted in the current superframe instead of waiting more time to reduce the average packet delay. Simulations are conducted to evaluate the network performance and verify our protocol design. Comparing with IEEE 802.15.4, the results reveal LDTA-MAC accommodates more devices access to the network and reduces the packet delay obviously without the cost of more energy consumption.
IEEE 802.15.4 技术为低速率短距离通信提供了一种解决方案。基于 IEEE 802.15.4 的综合超帧结构,本文提出了一种用于无线体域网(WBAN)的新型低延迟流量自适应介质访问控制(LDTA-MAC)协议。在 LDTA-MAC 中,根据流量负载动态分配保证时隙(GTS)。同时,将超帧的活动部分保持在合理的持续时间内,以降低网络设备的能耗。此外,对于成功的 GTS 请求,相关数据分组将在当前超帧中传输,而不是等待更多时间以减少平均分组延迟。通过仿真评估了网络性能,并验证了我们的协议设计。与 IEEE 802.15.4 相比,结果表明 LDTA-MAC 能够容纳更多设备接入网络,并明显降低分组延迟,而不会增加更多的能耗。