DocumentCode
3069109
Title
Handover within 3GPP LTE: Design Principles and Performance
Author
Dimou, Konstantinos ; Wang, Min ; Yang, Yu ; Kazmi, Muhammmad ; Larmo, Anna ; Pettersson, Jonas ; Muller, Walter ; Timner, Ylva
Author_Institution
Ericsson Res., Stockholm, Sweden
fYear
2009
fDate
20-23 Sept. 2009
Firstpage
1
Lastpage
5
Abstract
The 3GPP LTE system has been designed to offer significantly higher data rates, higher system throughput, and lower latency for delay critical services. This improved performance has to be provided and guaranteed under various mobility conditions. Hence, handover (HO) and its performance are of high importance. This paper investigates the performance of the handover procedure within 3GPP LTE in terms of HO failure rate and the delay of the whole procedure. System level simulations within a typical urban propagation environment, with different User Equipment (UE) speeds, cell radii and traffic loads per cell have been performed. The entire layer 3 signalling exchanged via air interface is considered in the simulations. In addition, errors at the Layer 1 (LI) control channels are taken into account. Simulation results show that the handover procedure within 3GPP satisfies the goal of high performance mobility. Namely for cell radii up to 1 km and for UE speeds up to 120 km/h, the HO failure rate lies within the range of 0-2.2% even in high loaded systems. For medium and low loads even at speeds of 250 km/h, HO failure is below 1.3 %. In addition, simulation results show that the handover procedure is robust against 1.1 control channel errors.
Keywords
3G mobile communication; channel estimation; mobility management (mobile radio); radio networks; 3GPP LTE; RRC signaling; handover; interruption time; long term evolution; system level simulations; Delay effects; Downlink; Error correction; Laboratories; Long Term Evolution; OFDM; Power measurement; Robust control; Telecommunication traffic; Throughput;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicular Technology Conference Fall (VTC 2009-Fall), 2009 IEEE 70th
Conference_Location
Anchorage, AK
ISSN
1090-3038
Print_ISBN
978-1-4244-2514-3
Electronic_ISBN
1090-3038
Type
conf
DOI
10.1109/VETECF.2009.5378909
Filename
5378909
Link To Document