Modeling of the Simultaneous Influence of the Thermal Noise and the Phase Noise in Space Communication Systems

Our work deals with studies of a noise behavior in space communication systems. Two most important noise types the additive thermal noise and the multiplicative phase noise, respectively, are included. A simple model of the narrowband communication system is created and simulated in the Ansoft Desig...

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Main Authors: O. Baran, M. Kasal
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2010-12-01
Series:Radioengineering
Subjects:
Online Access:http://www.radioeng.cz/fulltexts/2010/10_04_618_626.pdf
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spelling doaj-089525b3b5244f01a5068a11c8bc0c8b2020-11-24T20:58:49ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122010-12-01194618626Modeling of the Simultaneous Influence of the Thermal Noise and the Phase Noise in Space Communication SystemsO. BaranM. KasalOur work deals with studies of a noise behavior in space communication systems. Two most important noise types the additive thermal noise and the multiplicative phase noise, respectively, are included. A simple model of the narrowband communication system is created and simulated in the Ansoft Designer system simulator. The additive thermal noise is modeled as AWGN in a communication channel. The phase noise is produced in transmitter and receiver oscillators. The main intention is to investigate the receiver filter bandwidth decrease effect on powers of both noise types. Results proposed in this paper show that for defined system conditions and for a certain filter bandwidth value, the power of the multiplicative phase noise equals to the additive thermal noise power. Another decrease of the filter bandwidth causes the phase noise power exceeding. To demonstrate the noise behavior transparently, input system parameters are properly selected. All simulation results are documented by theoretical calculations. Simulation outcomes express a good coincidence with presumptions and calculations. www.radioeng.cz/fulltexts/2010/10_04_618_626.pdfAnsoft Designerthermal noiseAWGNphase noiseFIR filternoise bandwidth
collection DOAJ
language English
format Article
sources DOAJ
author O. Baran
M. Kasal
spellingShingle O. Baran
M. Kasal
Modeling of the Simultaneous Influence of the Thermal Noise and the Phase Noise in Space Communication Systems
Radioengineering
Ansoft Designer
thermal noise
AWGN
phase noise
FIR filter
noise bandwidth
author_facet O. Baran
M. Kasal
author_sort O. Baran
title Modeling of the Simultaneous Influence of the Thermal Noise and the Phase Noise in Space Communication Systems
title_short Modeling of the Simultaneous Influence of the Thermal Noise and the Phase Noise in Space Communication Systems
title_full Modeling of the Simultaneous Influence of the Thermal Noise and the Phase Noise in Space Communication Systems
title_fullStr Modeling of the Simultaneous Influence of the Thermal Noise and the Phase Noise in Space Communication Systems
title_full_unstemmed Modeling of the Simultaneous Influence of the Thermal Noise and the Phase Noise in Space Communication Systems
title_sort modeling of the simultaneous influence of the thermal noise and the phase noise in space communication systems
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2010-12-01
description Our work deals with studies of a noise behavior in space communication systems. Two most important noise types the additive thermal noise and the multiplicative phase noise, respectively, are included. A simple model of the narrowband communication system is created and simulated in the Ansoft Designer system simulator. The additive thermal noise is modeled as AWGN in a communication channel. The phase noise is produced in transmitter and receiver oscillators. The main intention is to investigate the receiver filter bandwidth decrease effect on powers of both noise types. Results proposed in this paper show that for defined system conditions and for a certain filter bandwidth value, the power of the multiplicative phase noise equals to the additive thermal noise power. Another decrease of the filter bandwidth causes the phase noise power exceeding. To demonstrate the noise behavior transparently, input system parameters are properly selected. All simulation results are documented by theoretical calculations. Simulation outcomes express a good coincidence with presumptions and calculations.
topic Ansoft Designer
thermal noise
AWGN
phase noise
FIR filter
noise bandwidth
url http://www.radioeng.cz/fulltexts/2010/10_04_618_626.pdf
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AT mkasal modelingofthesimultaneousinfluenceofthethermalnoiseandthephasenoiseinspacecommunicationsystems
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