Title :
New method of analyzing BER performance of GFSK with postdetection filtering
Author :
Shimizu, Masahiko ; Aoki, Nobuhisa ; Shirakawa, Kazuo ; Tozawa, Yoshiharu ; Okubo, Naofumi ; Daido, Yoshimasa
Author_Institution :
Wireless Commun. Syst. Lab., Fujitsu Labs. Ltd., Kawasaki, Japan
fDate :
4/1/1997 12:00:00 AM
Abstract :
This paper describes the theoretical performance of a frequency-hopping system using Gaussian-filtered FSK (GFSK), which is a promising candidate for 2.4-GHz wireless local area networks (WLAN). We have improved previous methods to calculate the bit-error rate (BER) performance of the GFSK system by considering the effect of a postdetection filter in the first-order approximation. The improved method is applicable when the single-sided bandwidth of the postdetection filter is wider than the bandwidth containing 99% of the GFSK signal energy. It is used to calculate the BER performance as well as the dependence of the BER on the level of interchannel interference. The calculated performance of the GFSK system suggests that the postdetection filter is very effective in reducing interchannel interference. The feasibility of a GFSK system with a 1-Mbd symbol rate and 0.32 modulation index is confirmed by the combination of a predetection filter with a 0.85-MHz bandwidth and a postdetection filter with a 0.8-MHz single-sided bandwidth
Keywords :
approximation theory; error statistics; filtering theory; frequency hop communication; frequency shift keying; interference suppression; performance evaluation; radiofrequency interference; wireless LAN; 0.85 MHz; 2.4 GHz; BER performance analysis; GFSK; GFSK signal energy; Gaussian-filtered FSK; UHF; WLAN; bandwidth; bit error rate; first-order approximation; frequency-hopping system; interchannel interference reduction; modulation index; postdetection filtering; single-sided bandwidth; symbol rate; wireless local area networks; AWGN; Bandwidth; Bit error rate; Filtering; Filters; Frequency shift keying; Gaussian processes; Interchannel interference; Performance analysis; Wireless LAN;
Journal_Title :
Communications, IEEE Transactions on