DocumentCode
2090496
Title
Fractional-bit detection with advanced sampling to combat multipath-induced error floor
Author
Crohn, Ilan ; Schultes, Gerhard ; Fuhl, Josef ; Bonek, Ernst
Author_Institution
Inst. fuer Nachrichtentechnik und Hochfrequenztechnik, Tech. Univ. Wien, Austria
fYear
1993
fDate
18-20 May 1993
Firstpage
388
Lastpage
391
Abstract
In digital mobile communications, the error floor caused by time dispersion of the channel limits data rate even in low delay spread situations. The errors originate in the transition regions between adjacent symbols when deep fades occur. A detection method to reduce these errors, i.e., fractional bit differential detection with sample timing which is advanced from the average mean excess delay, avoiding the transition regions, is analyzed. Assuming a minimum shift keying (MSK) modulation format, the error probability is calculated and verified by a Monte Carlo software simulation. The approach increases the tolerable delay spread in an unequalized receiver, depending on the details of the delay power profile. These are accounted for by introducing an effective delay spread. Limiting the bandwidth tends to smear the transition regions over the entire bit duration, thus offsetting part of the method´s benefit
Keywords
Monte Carlo methods; bandwidth compression; delays; digital radio; error statistics; fading; land mobile radio; minimum shift keying; multipath channels; signal detection; signal sampling; Monte Carlo software simulation; advanced sampling; bandwidth; deep fades; delay spread; digital mobile communications; error probability; fractional bit differential detection; minimum shift keying; multipath-induced error floor; Delay effects; Error probability; Frequency; Monte Carlo methods; Multipath channels; Propagation delay; Receivers; Sampling methods; Signal processing; Working environment noise;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicular Technology Conference, 1993., 43rd IEEE
Conference_Location
Secaucus, NJ
ISSN
1090-3038
Print_ISBN
0-7803-1267-8
Type
conf
DOI
10.1109/VETEC.1993.507493
Filename
507493
Link To Document