DocumentCode :
300393
Title :
A low power demodulator LSIC for personal communications: high performance coherent detection demodulator
Author :
Matsumoto, Y. ; Kubota, S. ; Kato, S.
Author_Institution :
NTT Radio Commun. Syst. Labs., Kanagawa, Japan
fYear :
1994
fDate :
18-23 Sep 1994
Firstpage :
476
Abstract :
This paper presents a low power coherent π/4-shift QPSK demodulator LSIC for personal communication systems in Japan. The developed LSIC, implemented on a CMOS 0.8 μm standard cell with 2-V operation, achieves better frame error rate performance and lower power consumption than conventional demodulators. It uniquely employs (1) a reverse-modulation carrier recovery scheme with a -π/4 signal-phase rotator and a band-width-varied carrier filter, (2) a clock recovery scheme using initial clock phase estimation, (3) a fully digital orthogonal detection scheme suitable for low power consumption, and (4) a burst detection scheme using phase information in preamble. Performance evaluation confirms that the demodulator LSIC reduces the irreducible frame error rate by 40%, and achieves an Eb/No improvement of 3 dB at the frame error rate of 10% compared with differential detection under the Rayleigh fading channel common in personal communication
Keywords :
CMOS digital integrated circuits; Rayleigh channels; demodulators; fading; large scale integration; personal communication networks; phase estimation; quadrature phase shift keying; synchronisation; π/4-shift QPSK demodulator; 0.8 micron; 2 V; CMOS; Eb/No improvement; Japan; LSI; Rayleigh fading channel; bandwidth-varied carrier filter; burst detection scheme; clock recovery scheme; coherent detection demodulator; frame error rate performance; fully digital orthogonal detection scheme; initial clock phase estimation; low power consumption; low power demodulator; performance evaluation; personal communication systems; reverse-modulation carrier recovery scheme; signal-phase rotator; Clocks; Demodulation; Digital filters; Energy consumption; Error analysis; Information filtering; Information filters; Phase detection; Quadrature phase shift keying; Standards development;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 1994. Wireless Networks - Catching the Mobile Future., 5th IEEE International Symposium on
Conference_Location :
The Hague
Print_ISBN :
90-5199-193-2
Type :
conf
DOI :
10.1109/WNCMF.1994.529135
Filename :
529135
Link To Document :
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