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A dual-radio contention-based protocol for paired spectrum access and TV white space

机译:配对频谱接入和电视空白空间的基于双无线竞争的协议

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Spectrum regulation for cellular networks, last-mile wireless broadband access, but also for the new secondary usage of the TV white space, often favor a paired radio spectrum so that different frequency channels are used for down- and uplink (base vs. mobile devices). This setup is also referred to as frequency division duplex. However, such a setup makes it difficult to apply contention-based protocols like those standardized by IEEE 802.11, because they were designed so that downlink and uplink share the same frequency channel. Yet the simplicity of the 802.11 protocol and its decentralized operation make it attractive for smart grid and consumer electronics applications using TV white space or licensed spectrum. Therefore we investigate a contention-based 802.11-like protocol for paired spectrum. We leverage its downlink-uplink separation into a protocol design that combines contention-based distributed medium access with a managed reaction to packet collisions. We also demonstrate why this paired spectrum approach is relevant and desirable for TV white space secondary spectrum access. The main advantages of this protocol are (1) enabling the usage of simple and low cost contention-based 802.11-like devices in paired spectrum, (2) providing collision detection management in the uplink, and (3) an inherent resource reservation for downlink traffic. The evaluation results confirm the validity of the proposed protocol design and demonstrate the benefits obtained from collision detection management.
机译:跨蜂窝网络的频谱调节,最后一英里无线宽带接入,而且还用于电视空白空间的新二次使用,往往有利于配对的无线电频谱,使得不同的频道用于下行链路(基站与移动设备) )。此设置也称为频分双工。然而,这样的设置使得难以应用于IEEE 802.11标准化的竞争的协议,因为它们被设计成使得下行链路和上行链路共享相同的频率信道。然而,802.11协议的简单性及其分散的操作使其对使用电视空白空间或许可频谱的智能电网和消费电子应用具有吸引力。因此,我们调查基于竞争的802.11的配对频谱的协议。我们利用其下行链路上行链路分离到协议设计中,将基于竞争的分布式媒体访问与分组冲突相结合。我们还展示了为什么这种配对的频谱方法是相关的并且对于电视白色空间次要光谱接入是相关的和理想的。本协议的主要优点是(1),使得能够在配对频谱中使用简单和低成本的争用的802.11样器件,(2)在上行链路中提供碰撞检测管理,以及(3)下行链路的固有资源预留交通。评估结果证实了所提出的协议设计的有效性,并展示了从碰撞检测管理获得的益处。

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