Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions

Volume: 21 Number: 3 August 13, 2017

Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions

Abstract

Important interference problems will be able to be encountered especially close areas to the hospitals where wireless implantable medical systems' communication traffic occurs heavily in near future. It is possible that these interferences could cause wireless implant devices to malfunction and harmful effects on patients. In this study, it is proposed to determine threshold distance in order to get less interference for wireless implantable medical systems under shadow fading conditions where MICS band and MetAids band users coexist intensely simultaneously. In this method, threshold power according to the \cite{FCC} is pulled down by adding extra distance margin in order to minimize the interference effects to the MICS systems using confidence interval calculations. Because received signal strength just below the monitoring threshold power according to the \cite{FCC} brings about much more interferences for the MICS systems even if listen-before-talk technique is applied.

Keywords

References

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Details

Primary Language

Turkish

Subjects

-

Journal Section

-

Publication Date

August 13, 2017

Submission Date

January 6, 2017

Acceptance Date

-

Published in Issue

Year 2017 Volume: 21 Number: 3

APA
Kulaç, S. (2017). Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 21(3), 718-723. https://doi.org/10.19113/sdufbed.00686
AMA
1.Kulaç S. Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions. J. Nat. Appl. Sci. 2017;21(3):718-723. doi:10.19113/sdufbed.00686
Chicago
Kulaç, Selman. 2017. “Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions”. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi 21 (3): 718-23. https://doi.org/10.19113/sdufbed.00686.
EndNote
Kulaç S (December 1, 2017) Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi 21 3 718–723.
IEEE
[1]S. Kulaç, “Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions”, J. Nat. Appl. Sci., vol. 21, no. 3, pp. 718–723, Dec. 2017, doi: 10.19113/sdufbed.00686.
ISNAD
Kulaç, Selman. “Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions”. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi 21/3 (December 1, 2017): 718-723. https://doi.org/10.19113/sdufbed.00686.
JAMA
1.Kulaç S. Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions. J. Nat. Appl. Sci. 2017;21:718–723.
MLA
Kulaç, Selman. “Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions”. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi, vol. 21, no. 3, Dec. 2017, pp. 718-23, doi:10.19113/sdufbed.00686.
Vancouver
1.Selman Kulaç. Determining Threshold Distance Providing Less Interference for Wireless Medical Implant Communication Systems in Coexisting Environments under Shadow Fading Conditions. J. Nat. Appl. Sci. 2017 Dec. 1;21(3):718-23. doi:10.19113/sdufbed.00686

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