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Comparative Study of Spectrum Sensing Techniques in Cognitive Radio Networks

机译:认知无线电网络谱检测技术的比较研究

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Traditional wireless networks including wireless sensor networks working in an unlicensed spectrum band are suffered from uncontrolled interference, as this unlicensed spectrum band gets crowded day by day. This problem is not because of spectrum band deficiency, rather it is because of the misuse/inefficient usage of the spectrum bands i.e., fixed spectrum assignment policy. Cognitive Radio (CR) is a promising technology to solve this challenging spectrum allocation problem. The CR opportunistically access vacant spectrum bands in a licensed spectrum. When the current band/channel becomes unavailable, the device can switch to another available channel. However, for the realization of the cognitive radio networks, spectrum sensing is the ground work and also regulatory bodies need to adopt flexible and non-fixed policies & techniques. In this paper, we analyze different spectrum sensing techniques to detect the presence of the Primary User (PU). The techniques covered in this paper are fuzzy logic cooperative spectrum sensing, asynchronous cooperative spectrum sensing, cooperative spectrum sensing based on network coding, cooperative spectrum sensing with relay diversity, and distributed cooperative spectrum sensing based network coding.
机译:包括在未经许可的频谱频段中工作的无线传感器网络在内的传统无线网络遭受不受控制的干扰,因为这款未许可的频谱频段日复一日地挤满了。这个问题不是因为频谱频段缺乏,而是因为它是因为频谱频带的误用/效率低下,而是固定频谱分配策略。认知无线电(CR)是解决这一具有挑战性的频谱分配问题的有希望的技术。 CR在许可频谱中机会上访问空缺频谱频段。当当前频带/通道变得不可用时,设备可以切换到另一个可用信道。然而,为了实现认知无线电网络,光谱感测是地面工作,并且监管机构需要采用灵活和非固定的政策和技术。在本文中,我们分析了不同的频谱感测技术来检测主要用户(PU)的存在。本文涵盖的技术是模糊逻辑协同频谱感测,基于网络编码的基于网络编码的协作谱检测,基于中继分集的协作频谱感测,以及基于分布的基于协作频谱感测的网络编码。

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