Title :
Distributed diffusion LMS based energy detection
Author :
Ainomae, Ahti ; Trump, Tonu ; Bengtsson, Martin
Author_Institution :
Dept. of Radio & Telecommun. Eng., Tallinn Univ. of Technol., Tallinn, Estonia
Abstract :
Cognitive radio (CR) is seen as a promising technology to make radio spectrum usage more effective by providing an opportunistic access for secondary users to the licensed spectrum areas. CR systems need to detect the presence of a primary user (PU) signal by continuously sensing the spectrum area of interest. Radiowave propagation effects like fading and shadowing often complicate sensing of spectrum holes because the PU signal can be weak in a particular area. Cooperative spectrum sensing is seen as a prospective solution to enhance the detection of PU signals. This paper studies distributed spectrum sensing in a cognitive radio context. We investigate distributed energy detection schemes without using any fusion center. We propose the usage of distributed, diffusion least mean square (LMS) type of power estimation algorithms. In this paper an Adapt and Combine (ATC) diffusion based power estimation scheme is proposed and the performance is compared with the Combine and Adapt (CTA) and ring-around schemes in a common framework. The PU signal is assumed to be slowly fading. We analyse the resulting energy detection performance and verify the theoretical findings through simulations.
Keywords :
cognitive radio; cooperative communication; least mean squares methods; radio spectrum management; radiowave propagation; signal detection; ATC diffusion; CR system; CTA scheme; PU signal detection; adapt and combine diffusion; cognitive radio licensed spectrum usage; combine and adapt scheme; cooperative distributed spectrum sensing; distributed diffusion LMS based energy detection; fusion center; least mean square; opportunistic access; power estimation scheme; primary user; radiowave propagation; ring-around scheme; secondary user; Algorithm design and analysis; Detectors; Estimation; Least squares approximations; Network topology; Topology; Cognitive radio; diffusion LMS; diffusion networks; distributed detection; distributed estimation; energy detection;
Conference_Titel :
Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT), 2014 6th International Congress on
Conference_Location :
St. Petersburg
DOI :
10.1109/ICUMT.2014.7002099