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On the Benefits of Multichannel/Wideband Spectrum Sensing with Non-Uniform Channel Sensing Durations for Cognitive Radio Networks

机译:具有非统一信道感知持续时间的多信道/宽带频谱感知对认知无线电网络的好处

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摘要

Two optimal frameworks for multichannel spectrum sensing in cognitive radio networks are presented. Both frameworks search for multiple secondary transmission opportunities over a number of narrowband channels, enhancing the secondary network performance while respecting the primary network integrity and keeping the interference limited. Considering a sequential periodic sensing scheme with non-uniform channel sensing durations, the original sensing problems are formulated as optimization problems to maximize the throughput capacity of the secondary network subject to some bounds/limits on the interference to the primary network. The first framework, referred to as sequential multichannel joint detection, considers the aggregate (weighted) interference on the primary network as the constraint. The second framework, known as decoupled sequential multichannel joint detection, assumes that interference is limited in each channel separately (i.e. independently). The non-convex sensing problems are transformed into convex optimization problems under certain practical conditions. Simulation results demonstrate the effectiveness of both the proposed frameworks and attest to their superior performances compared to contemporary strategies.
机译:提出了认知无线电网络中用于多信道频谱感测的两个最佳框架。两种框架都在许多窄带信道上搜索多个次要传输机会,从而在提高次要网络性能的同时,还尊重了主要网络的完整性并限制了干扰。考虑具有不均匀信道感测持续时间的顺序周期性感测方案,将原始感测问题表述为优化问题,以在受到对主要网络的干扰的某些限制/限制的情况下最大化次要网络的吞吐量。第一个框架称为顺序多通道联合检测,将主网络上的聚合(加权)干扰视为约束。第二种框架,称为解耦顺序多通道联合检测,假设干扰是分别(即独立地)限制在每个通道中的。在某些实际条件下,将非凸感测问题转化为凸优化问题。仿真结果证明了所提出框架的有效性,并证明了它们与现代策略相比的优越性能。

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