Coexistence Analysis of Bluetooth and
Cellular UMTS in the 2500-2690 MHz Band

Beitrag bei einer Tagung


Details zur Publikation

Autorinnen und Autoren: Konrad M, Koch W, Huschke J
Herausgeber: IEEE
Titel Sammelwerk: IEEE Wireless Communications and Networking Conference, WCNC
Jahr der Veröffentlichung: 2006
Tagungsband: Conference Proceedings
Seitenbereich: 1245-1249
ISBN: 1-4244-0270-0
ISSN: 1525-3511
Sprache: Englisch


Abstract

One of the key issues of next generation mobile communications is compatibility with other wireless standards to further enhance ubiquity. The 2500-2690 MHz band has been identified as extension band for IMT-2000 systems such as UMTS (Universal Mobile Telecommunications System). The 2.4 GHz ISM (Industrial, Scientific, and Medical) band is available for all kinds of unlicensed technologies such as Bluetooth (BT) and Wireless LAN (WLAN). The combination of BT and GSM within one mobile phone has become widely accepted, and therefore the same combination will be required to work for UMTS mobile phones operating in the 2.5 GHz extension band as well. Radio network simulations are performed for a variety of scenarios in order to analyze the performance of the integrated BT receiver while the UMTS uplink signal for frequency division duplex (FDD) mode is present. The objective of this work is to analyze the performance of the BT receive mode in terms of user satisfaction and outage probabilities for indoor use as worst case scenario. © 2006 IEEE.


FAU-Autorinnen und Autoren / FAU-Herausgeberinnen und Herausgeber

Koch, Wolfgang Prof. Dr.-Ing.
Lehrstuhl für Digitale Übertragung
Konrad, Markus
Lehrstuhl für Digitale Übertragung


Einrichtungen weiterer Autorinnen und Autoren

Telefonaktiebolaget L. M. Ericsson


Zitierweisen

APA:
Konrad, M., Koch, W., & Huschke, J. (2006). Coexistence Analysis of Bluetooth and Cellular UMTS in the 2500-2690 MHz Band. In IEEE (Eds.), Conference Proceedings (pp. 1245-1249). Las Vegas, NV.

MLA:
Konrad, Markus, Wolfgang Koch, and Jörg Huschke. "Coexistence Analysis of Bluetooth and Cellular UMTS in the 2500-2690 MHz Band." Proceedings of the IEEE Wireless Communications and Networking Conference (WCNC), Las Vegas, NV Ed. IEEE, 2006. 1245-1249.

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