首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Cross-Layer Based Opportunistic MAC Protocols for QoS Provisionings Over Cognitive Radio Wireless Networks
【24h】

Cross-Layer Based Opportunistic MAC Protocols for QoS Provisionings Over Cognitive Radio Wireless Networks

机译:认知无线电无线网络上基于QoS的基于层的机会MAC协议

获取原文
获取原文并翻译 | 示例
           

摘要

We propose the cross-layer based opportunistic multi-channel medium access control (MAC) protocols, which integrate the spectrum sensing at physical (PHY) layer with the packet scheduling at MAC layer, for the wireless ad hoc networks. Specifically, the MAC protocols enable the secondary users to identify and utilize the leftover frequency spectrum in a way that constrains the level of interference to the primary users. In our proposed protocols, each secondary user is equipped with two transceivers. One transceiver is tuned to the dedicated control channel, while the other is designed specifically as a cognitive radio that can periodically sense and dynamically use the identified un-used channels. To obtain the channel state accurately, we propose two collaborative channel spectrum-sensing policies, namely, the random sensing policy and the negotiation-based sensing policy, to help the MAC protocols detect the availability of leftover channels. Under the random sensing policy, each secondary user just randomly selects one of the channels for sensing. On the other hand, under the negotiation-based sensing policy, different secondary users attempt to select the distinct channels to sense by overhearing the control packets over the control channel. We develop the Markov chain model and the M/GY /1-based queueing model to characterize the performance of our proposed multi-channel MAC protocols under the two types of channel-sensing policies for the saturation network and the non-saturation network scenarios, respectively. In the non-saturation network case, we quantitatively identify the tradeoff between the aggregate traffic throughput and the packet transmission delay, which can provide the insightful guidelines to improve the delay-QoS provisionings over cognitive radio wireless networks.
机译:我们提出了基于跨层的机会性多信道媒体访问控制(MAC)协议,该协议将物理(PHY)层的频谱感知与MAC层的分组调度集成在一起,用于无线ad hoc网络。具体地说,MAC协议使次要用户能够以限制对主要用户的干扰级别的方式来识别和利用剩余频谱。在我们提出的协议中,每个二级用户都配备了两个收发器。一个收发器调谐到专用控制信道,而另一个收发器专门设计为认知无线电,可以周期性地感测和动态使用所标识的未使用信道。为了准确获取信道状态,我们提出了两种协作的信道频谱感知策略,即随机感知策略和基于协商的感知策略,以帮助MAC协议检测剩余信道的可用性。在随机感测策略下,每个次要用户只是随机选择一个通道进行感测。另一方面,在基于协商的感知策略下,不同的辅助用户尝试通过在控制信道上监听控制数据包来选择要感知的不同信道。我们开发了马尔可夫链模型和基于M / GY / 1的排队模型,以描述在饱和网络和非饱和网络场景的两种类型的信道感知策略下,我们提出的多信道MAC协议的性能,分别。在非饱和网络情况下,我们定量地确定了总流量吞吐量和数据包传输延迟之间的折衷,这可以提供有见地的指导,以改善认知无线电无线网络上的延迟QoS设置。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号