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RECOG: A Sensing-Based Cognitive Radio System with Real-Time Application Support

机译:RECOG:具有实时应用程序支持的基于感知的认知无线电系统

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摘要

While conventional cognitive radio (CR) system is striving at providing best possible protections for the usage of primary users (PU), little attention has been given to ensure the quality of service (QoS) of applications of secondary users (SU). When loading real-time applications over such a CR system, we have found that existing spectrum sensing schemes create a major hurdle for real-time traffic delivery of SU. For example, energy detection based sensing, a widely used technique, requires possibly more than 100 ms to detect a PU with weak signals. The delay is intolerable for real-time applications with stringent QoS requirements, such as voice over internet protocol (VoIP) or live video chat. This delay, along with other delays caused by backup channel searching, channel switching, and possible buffer overflow due to the insertion of sensing periods, makes supporting real-time applications over CR system very difficult if not impossible. In this paper, we present the design and implementation of a sensing-based CR system - RECOG, which is able to support realtime communications among SUs. We first redesign the conventional sensing scheme. Without increasing the complexity or trading off the detection performance, we break down a long sensing period into a series of shorter blocks, turning a disruptive long delay into negligible short delays. To enhance the sensing capability as well as better protect the QoS of SU traffic, we also incorporate an on-demand sensing scheme based on MAC layer information. In addition, to ensure a fast and reliable switching when PU returns, we integrate an efficient backup channel scanning and searching component in our system. Finally, to overcome a potential buffer overflow, we propose a CR-aware QoS manager. Our extensive experimental evaluations validate that RECOG can not only support realtime traffic among SUs with high quality, but also improve protections for PUs.
机译:尽管常规的认知无线电(CR)系统正在努力为主要用户(PU)的使用提供最佳的保护,但很少有人注意确保次要用户(SU)应用程序的服务质量(QoS)。当通过这样的CR系统加载实时应用程序时,我们发现现有的频谱感知方案为SU的实时流量传递创造了主要障碍。例如,基于能量检测的感测是一种广泛使用的技术,可能需要超过100毫秒才能检测到信号较弱的PU。对于具有严格QoS要求的实时应用(例如互联网协议语音(VoIP)或实时视频聊天),延迟是无法忍受的。这种延迟,以及由于备用信道搜索,信道切换以及由于插入感应周期而可能造成的缓冲区溢出所引起的其他延迟,使得即使不是不可能,也很难在CR系统上支持实时应用。在本文中,我们介绍了基于传感的CR系统RECOG的设计和实现,该系统能够支持SU之间的实时通信。我们首先重新设计传统的感应方案。在不增加复杂度或不影响检测性能的情况下,我们将较长的检测周期分解为一系列较短的块,从而将破坏性的较长延迟变为可忽略的较短延迟。为了增强感知能力并更好地保护SU流量的QoS,我们还结合了基于MAC层信息的按需感知方案。此外,为了确保PU返回时快速可靠的切换,我们在系统中集成了高效的备用通道扫描和搜索组件。最后,为了克服潜在的缓冲区溢出,我们提出了一种CR感知的QoS管理器。我们广泛的实验评估证明,RECOG不仅可以支持高质量的SU之间的实时流量,还可以改善对PU的保护。

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