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Performance of Joint Spectrum Sensing and MAC Algorithms for Multichannel Opportunistic Spectrum Access Ad Hoc Networks

机译:多通道机会频谱接入Ad Hoc网络的联合频谱感知和MAC算法性能

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We present an analytical framework to assess the link layer throughput of multichannel Opportunistic Spectrum Access (OSA) ad hoc networks. Specifically, we focus on analyzing various combinations of collaborative spectrum sensing and Medium Access Control (MAC) protocol abstractions. We decompose collaborative spectrum sensing into layers, parametrize each layer, classify existing solutions, and propose a new protocol called Truncated Time Division Multiple Access (TTDMA) that supports efficient distribution of sensing results in ȁC;kappa out of NȁD; fusion rule. In case of multichannel MAC protocols, we evaluate two main approaches of control channel design with 1) dedicated and 2) hopping channel. We propose to augment these protocols with options of handling secondary user (SU) connections preempted by primary user (PU) by 1) connection buffering until PU departure and 2) connection switching to a vacant PU channel. By comparing and optimizing different design combinations, we show that 1) it is generally better to buffer preempted SU connections than to switch them to PU vacant channels and 2) TTDMA is a promising design option for collaborative spectrum sensing process when kappa does not change over time.
机译:我们提出了一个分析框架,以评估多通道机会频谱访问(OSA)自组织网络的链路层吞吐量。具体来说,我们专注于分析协作频谱感知和媒体访问控制(MAC)协议抽象的各种组合。我们将协作频谱感测分解为层,对每个层进行参数化,对现有解​​决方案进行分类,并提出一种称为“截断时分多址”(TTDMA)的新协议,该协议支持在ȁC中有效分配感测结果;融合规则。在多通道MAC协议的情况下,我们使用1)专用通道和2)跳频通道来评估控制通道设计的两种主要方法。我们建议通过以下选项来增强这些协议:通过1)连接缓冲直到PU离开和2)连接切换到空闲的PU通道来处理主要用户(PU)抢占的次要用户(SU)连接。通过比较和优化不同的设计组合,我们表明:1)缓冲被抢占的SU连接通常比将它们切换到PU空信道要好,并且2)TTDMA是当kappa不变时用于协作频谱感测过程的有前途的设计选择时间。

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