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Cognitive radio for improved reliability in a real-time wireless MAC protocol based on TDMA

机译:认知无线电可提高基于TDMA的实时无线MAC协议的可靠性

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Wireless communications enables introduction of Internet of Things (IoT) in industrial networks. Unfortunately, real-time guarantees required for many IoT applications, may be compromised in wireless networks due to an unreliable transmission medium. A key component in enabling real-time communications is the medium access control (MAC) layer and its ability to effectively avoid concurrent transmissions that causes deadline misses. Also, deploying the network in a harsh interference environment can lead to low reliability. Time diversity, based on transmitting several copies of the same data at different instants, increases reliability but at the expense of increased jitter and bandwidth. A more efficient resource utilization is expected from cognitive radio, which dynamically takes into account the status of the wireless environment before performing transmissions. This paper proposes a wireless MAC protocol based on scheduled timeslots to avoid concurrent transmissions, combined with two different mechanisms to increase reliability, one based on time diversity and another on cognitive radio. The protocol and its mechanisms to enhance reliability are compared in different interference scenarios, and show that cognitive radios achieves better performance than time diversity, especially when the interference is produced by a jammer.
机译:无线通信可以在工业网络中引入物联网(IoT)。不幸的是,由于不可靠的传输介质,许多物联网应用所需的实时保证可能会在无线网络中受到损害。启用实时通信的关键组件是媒体访问控制(MAC)层,其有效避免导致截止日期丢失的并发传输的能力。另外,在恶劣的干扰环境中部署网络可能会导致可靠性降低。基于在不同时刻传输同一数据的多个副本的时间分集,虽然提高了可靠性,但以增加的抖动和带宽为代价。认知无线电有望实现更有效的资源利用,认知无线电在执行传输之前会动态考虑无线环境的状态。本文提出了一种基于调度时隙的无线MAC协议,以避免并发传输,并结合了两种不同的机制来提高可靠性,一种基于时间分集,另一种基于认知无线电。比较了该协议及其增强可靠性的机制,并在不同的干扰情况下进行了比较,结果表明,认知无线电比时间分集具有更好的性能,尤其是在干扰是由干扰产生的情况下。

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