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Delay Performance Analysis for Supporting Real-Time Traffic in a Cognitive Radio Sensor Network

机译:认知无线电传感器网络中支持实时流量的延迟性能分析

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Traditional wireless sensor networks (WSNs) working in the license-free spectrum suffer from uncontrolled interference as the license-free spectrum becomes increasingly crowded. Designing a WSN based on cognitive radio can be promising in the near future in order to provide data transmissions with quality of service requirements. In this paper we introduce a cognitive radio sensor network (CRSN) and analyze its performance for supporting real-time traffic. The network opportunistically accesses vacant channels in the licensed spectrum. When the current channel becomes unavailable, the devices can switch to another available channel. Two types of channel switchings are considered, in periodic switching (PS) the devices can switch to a new channel only at the beginning of each channel switching (CS) interval, while in triggered switching (TS) the devices can switch to a new channel as soon as the current channel is lost. We consider two types of real-time traffic, i) a burst of packets are generated periodically and the number of packets in each burst is random, and ii) packet arrivals follow a Poisson process. We derive the average packet transmission delay for each type of the traffic and channel switching mechanisms. Our results indicate that real-time traffic can be effectively supported in the CRSN with small average packet transmission delay. For the network using PS, packets with the Poisson arrivals experience longer average delay than the bursty arrivals; while for the network using TS, packets with the bursty arrivals experience longer average delay.
机译:随着免许可证频谱变得越来越拥挤,在免许可证频谱中工作的传统无线传感器网络(WSN)受到不受控制的干扰。为了向数据传输提供服务质量要求,在不久的将来设计基于认知无线电的WSN可能很有前途。在本文中,我们介绍了认知无线电传感器网络(CRSN),并分析了其支持实时流量的性能。网络机会性地访问许可频谱中的空闲信道。当前通道不可用时,设备可以切换到另一个可用通道。考虑了两种类型的信道切换,在周期性切换(PS)中,设备只能在每个信道切换(CS)间隔的开始时切换到新信道,而在触发切换(TS)中,设备可以切换到新信道一旦当前频道丢失。我们考虑两种类型的实时流量,即:i)周期性生成一个数据包突发,并且每个突发中的数据包数量是随机的,并且ii)数据包到达遵循泊松过程。我们推导每种流量和信道切换机制的平均数据包传输延迟。我们的结果表明,可以以较小的平均数据包传输延迟在CRSN中有效地支持实时流量。对于使用PS的网络,具有Poisson到达的数据包的平均延迟要比突发到达的更长。而对于使用TS的网络,突发到达的数据包会经历更长的平均延迟。

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