设计一种提高吞吐量和改进频谱感知技术的认知无线电

P. Dutta, G. C. Manna
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引用次数: 4

摘要

认知无线电的一个重要优点是它能够使用主要用户正在使用的许可频谱。CR有两个主要作用,即感知和吞吐量优化。与传统的感知方法,即循环平稳性,匹配滤波器检测,最大到最小特征值方法等相反,频谱感知通过在能量检测中实现接收信号的峰值与平均功率比而得到改进。它还具有不需要许可证用户的先验信息和不受噪声不确定性影响的优点。本文以无线频谱传感网络(WSSN)为基础,设计了MAC层的帧。通过握手算法实现对二级用户的通道接入。针对wsn网络设计并实现了一种基于CSA和DSA的混合帧结构,克服了传统帧格式的缺点。wsn网络从次要用户的帧中去掉了感知时间,从而增加了数据的传输时间,从而提高了系统的吞吐量。本文设计的认知无线电帧结构提高了系统的吞吐量,增强了频谱感知技术。最后,仿真结果表明,该方法在吞吐量上优于传统方法,提供了高效的频谱感知技术。
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Designing a cognitive radio with enhancement in throughput and improved spectrum sensing technique
An important advantage of cognitive radio is its ability to use the licensed frequency spectrum which is being utilized by the primary users. CR has two major roles viz. sensing and throughput optimization. In contrary to conventional methods of sensing viz. cyclostationarity, matched filter detection, maximum to minimum eigen value method etc., spectrum sensing has been improved by implementing Peak vs Average Power Ratio of the received signal in energy detection in the presentation. It has the additional advantages that prior information of the license user is not required and it is free from noise uncertainty. In this paper, the design of the frame for MAC layer has been based on Wireless spectrum Sensing network (WSSN). The access of the channel to the secondary users is done through Handshaking Algorithm. A hybrid frame structure based on CSA and DSA has been devised for the WSSN network and has been implemented which overcomes the drawback of Conventional frame format. The WSSN network removes the sensing time from the Secondary user's frame thereby increasing the transmission time of data and hence the throughput of the system. The cognitive radio frame structure, thus designed in the present paper, improves the throughput of the system and enhance the Spectrum sensing techniques. Finally, the simulation results shows that the proposed method performs better than the conventional method in throughput and provides efficient spectrum sensing technique.
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