Title :
Irreducible error performance of a digital portable communication system in a controlled time-dispersion indoor channel
Author :
Crohn, Ilan ; Schultes, Gerhard ; Gahleitner, Rainer ; Bonek, Ernst
Author_Institution :
Inst. fur Nachrichtentechnik & Hochfrequenztechnik, Tech. Univ. Wien, Austria
fDate :
9/1/1993 12:00:00 AM
Abstract :
The authors investigated experimentally, analytically, and by simulation the irreducible errors such as error floor for high signal-to-noise ratio that are introduced by time dispersion in a slowly fading Rayleigh channel. A multipath indoor propagation environment with controlled delay spread was created to validate this approach. The system is close to the Digital European Cordless Telecommunications (DECT) standard with 1 Mb/s GMSK-modulated signals being transmitted in FDM/TDMA/TDD format and received by a differential direct-conversion receiver. The measured and simulated error probability floor is Pe≈5×10-3 as a consequence of delay spread that is 10% of the bit length. This value is approximated by a closed-form analytical description of phase jitter due to large group delay bursts. Simulation results obtained previously by others for comparable cases are partially corroborated and partially disproved
Keywords :
digital radio systems; error statistics; fading; minimum shift keying; mobile radio systems; radiowave propagation; 1 Mbit/s; DECT standard; Digital European Cordless Telecommunications; FDM/TDMA/TDD format; GMSK-modulated signals; controlled delay spread; differential direct-conversion receiver; digital portable communication system; error floor; error probability; group delay bursts; high signal-to-noise ratio; indoor channel; irreducible errors; multipath indoor propagation; phase jitter; slowly fading Rayleigh channel; time dispersion; Analytical models; Communication system control; Length measurement; Propagation delay; Rayleigh channels; Signal analysis; Signal to noise ratio; Telecommunication control; Telecommunication standards; Time division multiple access;
Journal_Title :
Selected Areas in Communications, IEEE Journal on