Simulation of a smart sensor detection scheme for wireless communication based on modeling

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Tarih

2020

Dergi Başlığı

Dergi ISSN

Cilt Başlığı

Yayıncı

Mdpi

Erişim Hakkı

info:eu-repo/semantics/openAccess

Özet

The principle of sensing and sending information applies to all kinds of communications in different media like air, water, etc. During data transmission through sensors, the most important issue is sensing failure problems. In communication systems, sensing failure problems generally occur and affect sensor system performance. In this study, sensing failure issues are discussed, and a smart sensor is introduced that detects the communication signals. The characteristics of these sensors are identified with signal-to-noise ratio (SNR) readings. The proposed sensor system has high performance and it is better than many systems in the literature. Graphical findings show that the suggested scheme increases device efficiency and has more performance than the energy detector (ED) and ED-ADT-2013 by 33.5%, adaptive spectrum sensing (ASS)-2012 by 41.5%, energy detecting technique for adaptive spectrum sensing (EDT-ASS)-2015 by 28.2%, energy detector, and cyclo-2010 by 57.0%, and energy-SNR adaptive threshold (ADT) detector-2016 by 52.8% at -12 dB SNR, respectively. The proposed sensor detection scheme performs well compared to other existing sensors regarding sensing time. It was found that cooperative spectrum sensing (CSS) with the proposed method outperforms HwQ-2012 and CSS-EDT-ASS-2015 by 22.70% and 16.10% in terms of probability at -12 dB SNR, respectively, and detects the signal at -19.70 dB SNR.

Açıklama

Tomar, Geetam/0000-0002-0246-1527

Anahtar Kelimeler

Smart Sensor, Primary User (PU), Energy Detector (ED), Signal-To-Noise Ratio (SNR), Spectrum Sensing (SS), Cognitive Radio (CR), Cooperative Spectrum Sensing (CSS), Analog To Digital Converter (ADC), Decision Making Device (DMD), Estimated Signal-To-Noise Ratio (ESNR)

Kaynak

Electronics

WoS Q Değeri

Q2

Scopus Q Değeri

Q4

Cilt

9

Sayı

9

Künye