Journal Article

·2012

Chirp Z transform based spectrum sensing via energy detection

Mustafa Namdar YTU , Barış Şahin YTU , Hacı İlhan YTU , Lütfiye Durak-Ata YTU

Abstract

In this study, the performance analysis of Fast Fourier Transform and Chirp Z transform based OFDM systems for cognitive radio networks with energy detector model for the spectrum sensing method is realized. Here, energy detection model for noncooperative spectrum sensing is investigated. On the other hand, the analysis is implemented by segmented Chirp z transform. In this study Chirp z transform based spectrum sensing is proposed for the increase of dispersed spectrum utilization and in this context firstly used in literature. Also with the system model, using inverse fast Fourier transform in transmitter and Chirp z transform in receiver rather than fast Fourier transform, the computational complexity and the processing time are reduced, and performance increase is observed for high signal to noise ratio values.

Keywords

Chirp Fractional Fourier transform Chirp spread spectrum Fourier transform Energy (signal processing) Computer science Cognitive radio Electronic engineering Detector Algorithm Context (archaeology) Discrete Fourier transform (general) Telecommunications Spread spectrum Physics Optics Mathematics Engineering Fourier analysis Direct-sequence spread spectrum Statistics Wireless

Subject Areas

Cognitive Radio Networks and Spectrum Sensing ·Computer Networks and Communications ·Physical Sciences
Wireless Communication Networks Research ·Computer Networks and Communications ·Physical Sciences
PAPR reduction in OFDM ·Electrical and Electronic Engineering ·Physical Sciences

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