Performance Enhancement of Cyclostationarity Detector by Utilizing Multiple Cyclic Frequencies of OFDM Signals

Minseok Kim, Kimtho Po, J. Takada
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引用次数: 33

Abstract

Spectrum sensing is a key technical challenge for the cognitive radio (CR) technology which allows it to access the spectrum of the licensed systems without causing interference to them. It is well known that cyclostationarity detectors have a great advantage of the robustness of noise uncertainty which significantly degrades the performance and makes its implementation difficult in energy detectors. This paper pays attention to the fact that cyclostationarity detector can acheive diversity gain by manipulating multiple cyclic autocorrelation functions (CAFs). While most of combining schemes in cooperative sensing with multiple detectors require the signal to noise power ratio estimation which is impractical in low SNR regime, combining with multiple CAFs in single detector based on transmit signal characteristic can be used. In this paper, three detector schemes of selection combining (SC), equal gain combining (EGC) and maximum ratio combining (MRC) with multiple CAFs are evaluated in additive white Gaussian noise (AWGN) channel considering the OFDM signal of Japanese digital television broadcasting (ISDB-T) as a primary system. The numerical results will show that the cyclic detector based on MRC using several cyclic frequencies has the best detection performances even though EGC shows slightly worse performance in assumed condition.
利用OFDM信号的多循环频率增强循环平稳检测器的性能
频谱感知是认知无线电(CR)技术的一个关键技术挑战,它允许它在不对许可系统造成干扰的情况下访问许可系统的频谱。众所周知,循环平稳检测器具有对噪声不确定性的鲁棒性,这极大地降低了其性能,使其难以在能量检测器中实现。研究了循环平稳性检测器通过控制多个循环自相关函数来实现分集增益的方法。多数多探测器协同传感的组合方案都需要估计信噪比,在低信噪比条件下是不现实的,而基于发射信号特性在单个探测器中组合多个CAFs是可行的。本文以日本数字电视广播(ISDB-T)的OFDM信号为主要系统,在加性高斯白噪声(AWGN)信道中,对多CAFs的选择组合(SC)、等增益组合(EGC)和最大比组合(MRC)三种检波器方案进行了评价。数值结果表明,尽管EGC在假设条件下的检测性能略差,但基于多个循环频率的MRC循环检测器具有最佳的检测性能。
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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