On Transform Domain Communication Systems under Spectrum Sensing Mismatch: A Deterministic Analysis

Towards the era of mobile Internet and the Internet of Things (IoT), numerous sensors and devices are being introduced and interconnected. To support such an amount of data traffic, traditional wireless communication technologies are facing challenges both in terms of the increasing shortage of spec...

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Main Authors: Chuanxue Jin, Su Hu, Yixuan Huang, Qu Luo, Dan Huang, Yi Li, Yuan Gao, Shaochi Cheng
Format: Article
Language:English
Published: MDPI AG 2017-07-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/17/7/1594
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author Chuanxue Jin
Su Hu
Yixuan Huang
Qu Luo
Dan Huang
Yi Li
Yuan Gao
Shaochi Cheng
author_facet Chuanxue Jin
Su Hu
Yixuan Huang
Qu Luo
Dan Huang
Yi Li
Yuan Gao
Shaochi Cheng
author_sort Chuanxue Jin
collection DOAJ
description Towards the era of mobile Internet and the Internet of Things (IoT), numerous sensors and devices are being introduced and interconnected. To support such an amount of data traffic, traditional wireless communication technologies are facing challenges both in terms of the increasing shortage of spectrum resources and massive multiple access. The transform-domain communication system (TDCS) is considered as an alternative multiple access system, where 5G and mobile IoT are mainly focused. However, previous studies about TDCS are under the assumption that the transceiver has the global spectrum information, without the consideration of spectrum sensing mismatch (SSM). In this paper, we present the deterministic analysis of TDCS systems under arbitrary given spectrum sensing scenarios, especially the influence of the SSM pattern to the signal to noise ratio (SNR) performance. Simulation results show that arbitrary SSM pattern can lead to inferior bit error rate (BER) performance.
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spelling doaj.art-d00719fa4e49431a87600f020a75ed0d2022-12-22T04:22:38ZengMDPI AGSensors1424-82202017-07-01177159410.3390/s17071594s17071594On Transform Domain Communication Systems under Spectrum Sensing Mismatch: A Deterministic AnalysisChuanxue Jin0Su Hu1Yixuan Huang2Qu Luo3Dan Huang4Yi Li5Yuan Gao6Shaochi Cheng7National Key Lab on Communication, University of Electronic Science and Technology of China, 611731 Chengdu, ChinaNational Key Lab on Communication, University of Electronic Science and Technology of China, 611731 Chengdu, ChinaNational Key Lab on Communication, University of Electronic Science and Technology of China, 611731 Chengdu, ChinaNational Key Lab on Communication, University of Electronic Science and Technology of China, 611731 Chengdu, ChinaNational Key Lab on Communication, University of Electronic Science and Technology of China, 611731 Chengdu, ChinaThe High School Affiliated to Renmin University of China, 100080 Beijing, ChinaChina Defense Science and Technology Information Center, 100048 Beijing, ChinaChina Defense Science and Technology Information Center, 100048 Beijing, ChinaTowards the era of mobile Internet and the Internet of Things (IoT), numerous sensors and devices are being introduced and interconnected. To support such an amount of data traffic, traditional wireless communication technologies are facing challenges both in terms of the increasing shortage of spectrum resources and massive multiple access. The transform-domain communication system (TDCS) is considered as an alternative multiple access system, where 5G and mobile IoT are mainly focused. However, previous studies about TDCS are under the assumption that the transceiver has the global spectrum information, without the consideration of spectrum sensing mismatch (SSM). In this paper, we present the deterministic analysis of TDCS systems under arbitrary given spectrum sensing scenarios, especially the influence of the SSM pattern to the signal to noise ratio (SNR) performance. Simulation results show that arbitrary SSM pattern can lead to inferior bit error rate (BER) performance.https://www.mdpi.com/1424-8220/17/7/1594transform domain communication systemsspectrum sensing mismatchcyclic code shift keyinginternet of things
spellingShingle Chuanxue Jin
Su Hu
Yixuan Huang
Qu Luo
Dan Huang
Yi Li
Yuan Gao
Shaochi Cheng
On Transform Domain Communication Systems under Spectrum Sensing Mismatch: A Deterministic Analysis
Sensors
transform domain communication systems
spectrum sensing mismatch
cyclic code shift keying
internet of things
title On Transform Domain Communication Systems under Spectrum Sensing Mismatch: A Deterministic Analysis
title_full On Transform Domain Communication Systems under Spectrum Sensing Mismatch: A Deterministic Analysis
title_fullStr On Transform Domain Communication Systems under Spectrum Sensing Mismatch: A Deterministic Analysis
title_full_unstemmed On Transform Domain Communication Systems under Spectrum Sensing Mismatch: A Deterministic Analysis
title_short On Transform Domain Communication Systems under Spectrum Sensing Mismatch: A Deterministic Analysis
title_sort on transform domain communication systems under spectrum sensing mismatch a deterministic analysis
topic transform domain communication systems
spectrum sensing mismatch
cyclic code shift keying
internet of things
url https://www.mdpi.com/1424-8220/17/7/1594
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