Jing Tong, Huarui Wu, Changchuan Yin, Yan Ma, Jianfeng Li
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引用次数: 8
摘要
IEEE 802.22是第一个基于认知无线电(CR)的无线区域网络(WRAN)的全球无线标准。通常情况下,为了避免对在许可频段内工作的主用户(Primary user)造成干扰,需要周期性地中断从用户(Secondary user)的频谱感知。这样的数据传输中断会影响单节点的QoS (Quality of Service)。IEEE 802.22系统提出了动态跳频(DFH)技术。在DFH中,数据传输与频谱感知并行进行,不会中断。本文通过计算机仿真对该跳频模式与非跳频模式进行了比较,结果表明,虽然跳频模式需要多一些信道,但它可以减少与处理器的碰撞,实现更高的有效传送率和更高的吞吐量,从而为单元提供增强的QoS。
Dynamic frequency hopping vs. non-hopping in IEEE 802.22 systems
IEEE 802.22 is the first worldwide wireless standard based on Cognitive Radio (CR) for Wireless Regional Area Networks (WRAN). Usually, Secondary Users (SUs) have to be interrupted periodically for spectrum sensing so as to avoid interference to Primary Users (PUs) operating in the licensed bands. Such interruptions of data transmission, however, impair the Quality of Service (QoS) of SUs. Dynamic Frequency Hopping (DFH) has been proposed for IEEE 802.22 system. In DFH, data transmission is performed in parallel with spectrum sensing without interruptions. In this paper, we compare this hopping mode with non-hopping one by computer simulation, the results show that although hopping mode requires a little more channels, it can reduce the collision with PUs and achieve higher ratio of valid delivery and higher throughput, thus provide enhanced QoS for SUs.