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Methodology of a System Level Design for a Cognitive Radio Receiver 'Application for IEEE 802.22 Standard'

机译:用于认知无线电接收机的系统级设计的方法论“IEEE 802.22标准的应用”

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This paper exhibits a methodology to achieve a system level design for Cognitive Radio (CR) receiver supporting IEEE 802.22 Standard. Based on superheterodyne receiver supporting Sub-Band Sensing, the overall radio system characteristics depicted fro m the IEEE 802.22 Standard specifications are dispatched through the different receiver blocks. Moreover, we developed the theoretical calculation and different techniques of system level design. Each of Radio Frequency (RF) characteristics such as noise figure (NF), gain and linearity (third order intercept point, (IIP3)) is simulated taking in account the analog-to-digital converter (ADC) full scale power constraint. On the one hand, our system level simulation results proved that the receiver architecture is capable to perform spectrum sensing and to allow communication processing. The receiver performs a total gain of 51 dB and an IEP3 of -19.8 dBm for low gain mode. It achieves 105dB as gain and 9.9 dB for noise figure for high gain mode.
机译:本文展示了一种方法来实现支持IEEE 802.22标准的认知无线电(CR)接收器的系统级设计。基于支持子带传感的超外差接收器,所描绘的整体无线电系统特性通过不同的接收器块分派。此外,我们开发了系统级设计的理论计算和不同技术。考虑到模数转换器(ADC)全尺度功率约束,模拟诸如噪声图(NF),增益和线性度(三阶截取点(IIP3))的射频(RF)特性(第三阶截取点(IIP3))。一方面,我们的系统级仿真结果证明了接收器架构能够执行频谱感测并允许通信处理。接收器为低增益模式执行51 dB的总增益和-19.8 dBm的IEP3。它为高增益模式的噪声系数达到105dB和9.9 dB。

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