A fast spectrum sensing and revocation testbed based on USRP and GNU radio for cognitive radio networks

Wen-Kang Jia, Yun Zheng, Tain-Sao Chang
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Abstract

Since the use of wireless devices in the already overcrowded licensed and unlicensed bands had been further growing recently. Realization of wireless communications in Cognitive Radio (CR) is one of the most urgent research and development issues to accommodate rapidly increasing wireless access. In order to ensure avoidance of interference from Secondary Users (SUs) to Primary Users (PUs), adoption of White Space Database (WSDB) is one of the important strategies. In this paper, we have implemented the PAWS API and WSDB for spectrum allocation and show that mechanism operations with an experimental DSA network, which enables the SUs to share the White Space (WS) of PUs in a fine geolocation and timescale. In the experimental setup, the DSA network consists of the secondary transmitter node (STN) and secondary receiver node (SRN), a sensing node (SN), and primary transmitter node (PTN). The network is constructed by using the proposed spectrum sensing and revocation testbed. The testbed employs the Universal Software Radio Peripheral (USRP) devices and open source software, named GNU radio, to develop the spectrum sensing and revocation mechanism. We demonstrate the communication between the STN and the SRN, while avoiding interference to PTN which operates in the same spectrum. The experimental shows that the network is capable of detecting PTN in real time and revocation spectrum adaptively to avoid interference to primary receiver node (PRN). The experimental results are presented to show that the performance of proposed mechanism in terms of the expending time of sensing available channels and revocation spectrum.
基于USRP和GNU无线电的认知无线电网络快速频谱感知与撤销试验台
由于在已经过度拥挤的有执照和无执照频带中使用无线设备的情况最近进一步增加。在认知无线电(CR)中实现无线通信是适应快速增长的无线接入的最紧迫的研究和发展问题之一。为了避免从用户对主用户的干扰,采用空白数据库(WSDB)是重要的策略之一。在本文中,我们实现了用于频谱分配的PAWS API和WSDB,并展示了该机制在实验DSA网络上的操作,该网络使单元能够在精细的地理位置和时间尺度上共享pu的空白空间(WS)。在实验设置中,DSA网络由副发送节点(STN)和副接收节点(SRN)、感知节点(SN)和主发送节点(PTN)组成。利用提出的频谱感知与撤销试验台构建了该网络。该试验台采用通用软件无线电外设(USRP)设备和开源软件GNU Radio开发频谱感知和撤销机制。我们演示了STN和SRN之间的通信,同时避免了对在同一频谱中工作的PTN的干扰。实验表明,该网络具有实时检测PTN和自适应撤销频谱的能力,避免了对主接收节点(PRN)的干扰。实验结果表明,该机制在感知可用信道和撤销频谱的花费时间方面具有良好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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