Title :
All-digital reverse modulation architecture based carrier recovery implementation for GMSK and compatible FQPSK
Author :
Gao, Wei ; Feher, Kamilo
Author_Institution :
Dept. of Electr. & Comput. Eng., California Univ., Davis, CA, USA
fDate :
3/1/1996 12:00:00 AM
Abstract :
A carrier recovery circuit implementation with an all-digital reverse modulation approach for coherent detection in the GSM/GMSK system as well as the GMSK compatible improved efficiency cross-correlated FQPSK system is presented. The proposed carrier recovery implementation utilizes all-digital reverse modulation circuit in a feedback loop to remove the modulated signal from the received intermediate frequency (IF) signal and to estimate the phase error of this carrier signal using a phase-locked loop (PLL). The digital reverse modulation approach avoids the multipliers required in an analog reverse modulation design, so that it can be implemented in a single chip FPGA. Hardware implementation of the coherent detection demonstrates that cross-correlated FQPSK is completely compatible with GMSK in the system performance and the receiver structure for GSM. Experimental performance evaluations show that the proposed carrier recovery circuit provides a Bit Error Rate (BER) performance within 0.3 dB in a non-linearly amplified channel corrupted by additive white Gaussian noise (AWCN) as compared with the simulated performance of the GSM/GMSK system
Keywords :
Gaussian channels; digital phase locked loops; field programmable gate arrays; minimum shift keying; phase estimation; quadrature phase shift keying; signal detection; BER performance; GMSK; additive white Gaussian noise; all-digital reverse modulation architecture; carrier recovery circuit; coherent detection; compatible FQPSK; feedback loop; nonlinearly amplified channel; phase error estimation; phase-locked loop; received intermediate frequency signal; receiver structure; single chip FPGA; system performance; Bit error rate; Digital modulation; Feedback circuits; Feedback loop; Field programmable gate arrays; Frequency estimation; GSM; Phase estimation; Phase locked loops; Phase modulation;
Journal_Title :
Broadcasting, IEEE Transactions on