Title :
A decision feedback equalizer with a frequency offset compensating circuit for digital cellular radio
Author :
Shimazaki, Yoshihio ; Nakai, Toshihisa ; Ono, Shigeru ; Kondoh, Noriaki
Author_Institution :
Oki Electric Industry Co. Ltd., Tokyo, Japan
Abstract :
The performance of a decision feedback equalizer (DFE) with a frequency offset compensating circuit for the North American digital cellular system (NADC) is presented. The carrier frequency offset at the equalizer´s output deteriorates performance of the DFF. Using the unit upper triangular matrix diagonal matrix decomposition type recursive least squares algorithm as an adaptive algorithm, a frequency offset compensating circuit, which is composed of a phase locked loop (PLL), is used. Simultaneous control of the DFE and PLL is effectively utilized to improve the performance. A BER below 3% for all delays up to one symbol period can be achieved when the average Eb/N0 is 20 dB, the fading frequency is 80 Hz and the carrier frequency offset is 200 Hz in the simulation results. The authors assume the two rays equal power multipath Rayleigh fading model, the same as the NADC specifications. The influence of quantization in the calculation is described. The mantissa-field occupies 8 bits and the exponent-field occupies 6 bits
Keywords :
cellular radio; digital radio systems; equalisers; fading; phase-locked loops; 20 dB; BER; DFF; North American digital cellular system; adaptive algorithm; carrier frequency offset; decision feedback equalizer; delays; exponent-field; fading frequency; frequency offset compensating circuit; mantissa-field; one symbol period; phase locked loop; quantization; recursive least squares algorithm; two rays equal power multipath Rayleigh fading model; unit upper triangular matrix diagonal matrix decomposition; Adaptive algorithm; Bit error rate; Decision feedback equalizers; Delay; Feedback circuits; Frequency; Least squares methods; Matrix decomposition; Phase locked loops; Rayleigh channels;
Conference_Titel :
Vehicular Technology Conference, 1992, IEEE 42nd
Conference_Location :
Denver, CO
Print_ISBN :
0-7803-0673-2
DOI :
10.1109/VETEC.1992.245325