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首页> 外文期刊>IEICE Transactions on Communications >Robust Spectrum Sensing Algorithms for Cognitive Radio Application by Using Distributed Sensors
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Robust Spectrum Sensing Algorithms for Cognitive Radio Application by Using Distributed Sensors

机译:分布式传感器在认知无线电应用中的鲁棒频谱感知算法

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摘要

Due to the advancement of software radio and RF technology, cognitive radio(CR) has become an enabling technology to realize dynamic spectrum access through its spectrum sensing and reconfiguration capability. Robust and reliable spectrum sensing is a key factor to discover spectrum opportunity. Single cognitive radios often fail to provide such reliable information because of their inherent sensitivity limitation. Primary signals that are subject to detection by cognitive radios may become weak due to several factors such as fading and shadowing. One approach to overcome this problem is to perform spectrum sensing by using multiple CRs or multiple spectrum sensors. This approach is known as distributed sensing because sensing is carried out through cooperation of spatially distributed sensors. In distributed sensing, sensors should perform spectrum sensing and forward the result to a destination where data fusion is carried out. Depending on the channel conditions between sensors (sensor-to-sensor channel) and between the sensor and the radio (user-channel), we explore different spectrum sensing algorithms where sensors provide the sensing information either cooperatively or independently. Moreover we investigate sensing schemes based on soft information combining (SC), hard information combining (HC). Finally we propose a two-stage detection scheme that uses both SC and HC. The newly proposed detection scheme is shown to provide improved performance compared to sensing based on either HC or SC alone. Computer simulation results are provided to illustrate the performances of the different sensing algorithms.
机译:由于软件无线电和RF技术的进步,认知无线电(CR)已成为通过其频谱感测和重新配置功能实现动态频谱访问的使能技术。强大而可靠的频谱感应是发现频谱机会的关键因素。由于其固有的灵敏度限制,单个认知无线电通常无法提供这种可靠的信息。受到认知无线电检测的主要信号可能会由于诸如衰落和阴影之类的多种因素而变得微弱。解决该问题的一种方法是通过使用多个CR或多个频谱传感器来执行频谱感测。这种方法称为分布式传感,因为传感是通过空间分布式传感器的协作来执行的。在分布式传感中,传感器应执行频谱传感并将结果转发到执行数据融合的目的地。根据传感器之间(传感器到传感器的通道)以及传感器和无线电之间的通道条件(用户通道),我们探索不同的频谱传感算法,其中传感器可以协作或独立地提供传感信息。此外,我们研究基于软信息组合(SC),硬信息组合(HC)的传感方案。最后,我们提出了使用SC和HC的两阶段检测方案。与仅基于HC或SC的检测相比,新提出的检测方案显示出更高的性能。提供计算机仿真结果以说明不同感测算法的性能。

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