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Design of a Single Channel Modulated Wideband Converter for Wideband Spectrum Sensing: Theory, Architecture and Hardware Implementation

机译:用于宽带频谱传感的单通道调制宽带转换器的设计:理论,体系结构和硬件实现

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In a cognitive radio sensor network (CRSN), wideband spectrum sensing devices which aims to effectively exploit temporarily vacant spectrum intervals as soon as possible are of great importance. However, the challenge of increasingly high signal frequency and wide bandwidth requires an extremely high sampling rate which may exceed today’s best analog-to-digital converters (ADCs) front-end bandwidth. Recently, the newly proposed architecture called modulated wideband converter (MWC), is an attractive analog compressed sensing technique that can highly reduce the sampling rate. However, the MWC has high hardware complexity owing to its parallel channel structure especially when the number of signals increases. In this paper, we propose a single channel modulated wideband converter (SCMWC) scheme for spectrum sensing of band-limited wide-sense stationary (WSS) signals. With one antenna or sensor, this scheme can save not only sampling rate but also hardware complexity. We then present a new, SCMWC based, single node CR prototype System, on which the spectrum sensing algorithm was tested. Experiments on our hardware prototype show that the proposed architecture leads to successful spectrum sensing. And the total sampling rate as well as hardware size is only one channel’s consumption of MWC.
机译:在认知无线电传感器网络(CRSN)中,旨在尽快有效利用临时空闲频谱间隔的宽带频谱传感设备非常重要。但是,信号频率和带宽越来越高的挑战要求极高的采样率,这可能会超过当今最好的模数转换器(ADC)前端带宽。最近,新提出的称为调制宽带转换器(MWC)的体系结构是一种有吸引力的模拟压缩传感技术,可以大大降低采样率。但是,MWC由于其并行通道结构而具有很高的硬件复杂性,尤其是在信号数量增加时。在本文中,我们提出了一种单通道调制宽带转换器(SCMWC)方案,用于带宽受限的宽带固定(WSS)信号的频谱感测。使用一个天线或传感器,该方案不仅可以节省采样率,而且可以节省硬件复杂性。然后,我们提出了一个新的基于SCMWC的单节点CR原型系统,在该系统上测试了频谱感应算法。在我们的硬件原型上进行的实验表明,所提出的架构可以成功实现频谱感测。总采样率以及硬件大小仅是一个通道消耗的MWC。

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