A Cognitive Radio Receiver Supporting Wide-Band Sensing

V. Blaschke, T. Renk, F. Jondral
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引用次数: 36

Abstract

IEEE 802.22 defines the world-wide first cognitive radio (CR) standard. In the range between 41 MHz and 910 MHz CR overlay-systems can be installed besides licensed radio services such as radio and TV broadcasting. In order to fulfill the regulative guidelines for interference limitations, adequate spectral sensing and user detection has to be supported by the CR terminals. The wide frequency range specified in IEEE 802.22 and the high dynamic range of signals in this band lead to high demands on the CR receiver's front-end. Especially the performance requirements on analog-to-digital converters (ADCs) increase significantly compared to current wireless systems. Based on measurements taken in the frequency range between 41 MHz and 910 MHz requirements to CR's ADCs are figured out. Furthermore, the measurement results are analyzed regarding expectable allocation scenarios and their impacts on spectral sensing. Derived from these results and a comparison of general spectral sensing mechanisms, an approach for a CR receiver enabling wide-band sensing is presented. By combining a-priori information resulting from scenario analysis with adapted information processing in the CR terminal, the ADC's performance requirements can be reduced.
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一种支持宽带传感的认知无线电接收机
IEEE 802.22定义了全球首个认知无线电(CR)标准。在41兆赫至910兆赫的范围内,除了获发牌照的无线电服务(例如无线电及电视广播)外,亦可安装CR覆盖系统。为了满足干扰限制的规范准则,CR终端必须支持足够的频谱感知和用户检测。由于IEEE 802.22规定的宽频率范围和该频段信号的高动态范围,对CR接收机前端的要求很高。特别是与目前的无线系统相比,对模数转换器(adc)的性能要求显著提高。根据在41 MHz和910 MHz之间的频率范围内进行的测量,计算出CR的adc的要求。在此基础上,分析了预期分配场景下的测量结果及其对光谱感知的影响。根据这些结果和一般光谱感知机制的比较,提出了一种实现宽带感知的CR接收器方法。通过将场景分析得出的先验信息与CR终端的自适应信息处理相结合,可以降低ADC的性能要求。
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