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Low complexity spectrum sensing using variable digital filters for cognitive radio based air-ground communication

机译:使用可变数字滤波器进行基于认知无线电的空地通信的低复杂度频谱感测

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摘要

Cognitive radios (CRs) enable efficient usage of the radio frequency spectrum by sensing their operating environments and adapting their transceiver characteristics accordingly. This ability of CRs makes them a feasible choice to achieve green radio networks. CRs perform spectrum sensing, wherein presence and/or absence of licensed users' signals is detected in the wideband input frequency range in order to allow opportunistic access of the vacant frequency bands to unlicensed users. Variable digital filters (VDFs) which can provide frequency responses with variable cutoff frequencies are widely used for spectrum sensing in CRs. In this paper, we propose an energy detector based spectrum sensing scheme which employs such VDFs based on first order all pass transformation and the modified coefficient decimation method. With the help of design example of an air-ground communication scenario, we show that VDFs employed in the proposed scheme are low complexity alternatives to the other relevant VDFs in literature. The proposed spectrum sensing scheme can be useful not only for solving the anticipated spectrum scarcity caused by the existing static spectrum allocation scheme in current air-ground communication systems, but also in achieving energy efficient green communications.
机译:认知无线电(CR)通过感测其工作环境并相应地调整其收发器特性,可以有效利用无线电频谱。 CR的这种能力使其成为实现绿色无线电网络的可行选择。 CR执行频谱感测,其中在宽带输入频率范围内检测许可用户信号的存在和/或不存在,以允许空闲频段机会性地接入非许可用户。可以提供具有可变截止频率的频率响应的可变数字滤波器(VDF)被广泛用于CR的频谱感测。在本文中,我们提出了一种基于能量检测器的频谱传感方案,该方案基于一阶全通变换和改进的系数抽取方法,采用了这种VDF。借助空对地通信场景的设计示例,我们证明了所提出的方案中使用的VDF是文献中其他相关VDF的低复杂度替代方案。所提出的频谱感测方案不仅可用于解决由当前空地通信系统中的现有静态频谱分配方案引起的预期频谱稀缺,而且可用于实现节能绿色通信。

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