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Cross-Layer Design for Prompt and Reliable Transmissions Over Body Area Networks

机译:跨层设计,可在人体局域网上迅速可靠地进行传输

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In this paper, we propose a cross-layer design to make ambulatory health monitoring via body area networks (BAN) more reliable and robust. The proposed design builds on our centralized body area network access scheme (CBAS), a receiver-initiated medium access control (MAC) scheme that improves the visibility of a BAN in a coexistent environment, where diverse networks with various physical and MAC protocols share the radio spectrum. The design enhances CBAS by incorporating a network layer scheme that improves the packet delivery ratio (PDR), while minimizing the need for multihop cooperative transmissions; thus, packet delay is less compromised to achieve higher PDRs. The MAC layer provides the network layer with local information about the quality of on-body links to enable the BAN to identify the most reliable links in a distributed manner. Extensive experimental results are presented, which give insights on how the proposed cross-layer design improves PDR and packet delay. Results show the effectiveness of the proposed design which takes advantage of dynamic scheduling and multihop relays as warranted by the link conditions.
机译:在本文中,我们提出了一种跨层设计,以使通过身体区域网络(BAN)进行的门诊健康监控更加可靠和强大。提议的设计建立在我们的集中式人体局域网访问方案(CBAS)的基础上,该方案是一种接收器启动的媒体访问控制(MAC)方案,可以提高共存环境中BAN的可见性,在该环境中,具有各种物理和MAC协议的各种网络共享无线电频谱。该设计通过结合网络层方案来增强CBAS,该方案可提高数据包传送率(PDR),同时将对多跳协作传输的需求降至最低。因此,减少了数据包延迟以实现更高的PDR。 MAC层向网络层提供有关体上链接质量的本地信息,以使BAN能够以分布式方式识别最可靠的链接。提出了广泛的实验结果,这些结果对所提出的跨层设计如何改善PDR和数据包延迟提供了见识。结果表明了所提出的设计的有效性,该设计利用了链接条件所保证的动态调度和多跳中继。

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