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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Improved spectrum sensing and achieved throughput of multiband cognitive radio systems under probabilistic spectrum access
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Improved spectrum sensing and achieved throughput of multiband cognitive radio systems under probabilistic spectrum access

机译:在概率频谱接入下改进频谱感测并实现了多频带认知无线电系统的吞吐量

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摘要

We investigate wideband spectrum sensing for multiband cognitive radio (CR) to opportunistically detect spectrum holes without causing harmful interference to licensed (primary) subchannels. In classical wideband energy detection, primary subchannels are absolutely classified into vacant or occupied according to the measured energy. CR signal transmission is then performed over all vacant subchannels. In this paper, we first introduce a probabilistic spectrum access method, which assigns a probability for CR signal transmission over each primary subchannel. More precisely, in our proposed method, each primary subchannel is likely to be classified into vacant or occupied via the definition of a spectrum access probability for CR transmission, in contrast to absolute sub-channel classification used in classical methods. Second, we derive the secondary information rates achieved by the proposed spectrum sensing method and compare it to those provided by classical wideband spectrum sensing. Third, we perform optimal power allocation to maximize the CR achievable rates constrained on the total power and interference introduced to the primary network. Numerical results indicate that the proposed spectrum access outperforms the classically-used spectrum sensing in terms of secondary achievable data rates.
机译:我们研究了多频带认知无线电(CR)的宽带频谱感测到机会地区学习频谱孔,而不会导致对许可(主要)子信道的有害干扰。在古典宽带能量检测中,主要子信道绝对分类为空置或根据测量能量占用。然后在所有空置子信道上执行CR信号传输。在本文中,我们首先介绍概率频谱接入方法,该方法为每个主子信道传输CR信号传输的概率。更精确地,在我们所提出的方法中,与经典方法中使用的绝对子信道分类相比,每个主子信道可能被分类为空置或占用的CR传输的频谱访问概率。其次,我们推出了所提出的频谱传感方法所实现的二级信息率,并将其与经典宽带频谱感测提供的那些进行比较。第三,我们执行最佳功率分配,以最大限度地提高受限于引入主要网络的总功率和干扰的CR可实现的率。数值结果表明,所提出的频谱接入优于二次可实现的数据速率方面的经典使用的频谱感测。

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