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Spectrum sensing for OFDM systems employing pilot tones

机译:使用导频音的OFDM系统的频谱感测

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摘要

OFDM spectrum sensing algorithms are presented in this paper. The proposed spectrum sensing algorithms are based on Time-Domain Symbol Cross-Correlation (TDSC-MRC and TDSC-NP methods) and can be applied to all existing wireless OFDM systems. The statistical behaviors of the TDSCbased spectrum sensors are explicitly analyzed. The sensing performances of the TDSC-based spectrum sensors in terms of misdetection probability are derived in detail. In addition, the spectrum sensing method employing the Cyclic Prefix of the OFDM modulated signals (CP method) is described for comparison purposes. The DVB-T Standard [5] is adopted as an application example to illustrate the proposed spectrum sensing algorithms. Simulation results show that the TDSC-MRC method outperforms the CP method for all values of CP ratio considered. The TDSC methods have the advantage that the detection performances are the same for different CP ratios, while the detection performance of the CP method degrades dramatically when the CP ratio becomes small. From simulation results, for a sensing time of 50 ms, the TDSC-MRC method can achieve misdetection probabilities of 0.1 and 0.01 with respect to a false alarm probability of 0.01 for SNR values of -20.5 dB and -19.5 dB, respectively.
机译:提出了OFDM频谱感知算法。所提出的频谱感测算法基于时域符号互相关(TDSC-MRC和TDSC-NP方法),并且可以应用于所有现有的无线OFDM系统。明确分析了基于TDSC的频谱传感器的统计行为。详细推导了基于TDSC的频谱传感器的误检测概率。另外,出于比较目的,描述了采用OFDM调制信号的循环前缀的频谱感测方法(CP方法)。以DVB-T标准[5]作为应用示例来说明所提出的频谱感测算法。仿真结果表明,对于所有考虑的CP比值,TDSC-MRC方法均优于CP方法。 TDSC方法的优点在于,对于不同的CP比率,检测性能是相同的,而当CP比率变小时,CP方法的检测性能急剧下降。根据仿真结果,对于50 ms的感测时间,TDSC-MRC方法相对于SNR值为-20.5 dB和-19.5 dB的误报概率为0.01时,可以实现0.1和0.01的误检概率。

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