Title :
Advanced frequency hopping modulation for spread spectrum WLAN
Author :
Glisic, Savo ; Nikolic, Zorica ; Milosevic, Nenad ; Pouttu, Ari
Author_Institution :
Telecommun. Lab., Oulu Univ., Finland
Abstract :
A wireless LAN standard developed by IEEE committee P802.11 operates in the unlicensed 2.4 GHz ISM band. This band is a very hostile environment due to many unpredictable interference sources, such as microwave ovens, utilizing the same frequency bands. At the same time the allowed signal power density that can be used is limited in order to minimize the interference to other users in the same band. In order to avoid these interference and keep a low signal power density the standard supports both direct sequence (DS) and frequency hopping (FH) modulation for these applications. The new test beds for multimedia wireless (WLANs) also use FH modulation. We analyze the performance of a modification of the FH multiple frequency shift keying (MFSK) system that includes a multitone multiamplitude MFSK signal, designated as amMFSK modulation. In this case, in order to meet the transmitted power density limits imposed in the ISM band, the signal energy is split into m separate tones. This makes the system more vulnerable to noise and fading, but still the overall flow of useful information will be increased. The results demonstrate that under the large range of the signal, channel and interference parameters this system offers better performance.
Keywords :
IEEE standards; error statistics; frequency hop communication; frequency shift keying; multimedia communication; radiofrequency interference; spread spectrum communication; telecommunication standards; wireless LAN; 2.4 GHz; FH modulation; IEEE committee; ISM band; MFSK; UHF; amMFSK modulation; channel parameters; direct sequence modulation; error probability; fading; frequency bands; frequency hopping modulation; interference parameters; interference sources; microwave ovens; multimedia wireless LAN; multiple frequency shift keying system; multitone multiamplitude MFSK signal; noise; signal power density; spread spectrum WLAN; system performance; test beds; transmitted power density limits; unlicensed ISM band; wireless LAN standard; Frequency modulation; Frequency shift keying; Interference; Microwave ovens; Performance analysis; Signal analysis; Spread spectrum communication; Standards development; Testing; Wireless LAN;
Journal_Title :
Selected Areas in Communications, IEEE Journal on