Title :
Inter-subcarrier interference compensation in the frequency-hopped single-carrier frequency division multiple access communication system
Author :
Kim, Jung-Ho ; Ryu, H.-G.
Author_Institution :
Dept. of Electron. Eng., Chungbuk Nat. Univ., Cheongju, South Korea
Abstract :
Single-carrier frequency division multiple access (SC-FDMA) system having very good characteristic on peak-to-average power ratio is promising in communication area. But the performance of SC-FDMA system is very sensitive to inter-subcarrier interference (ICI), and existing phase noise suppression algorithm has reduced just phase noise only. Therefore the authors propose effective method, phase noise and frequency offset suppression (PNFS) algorithm, using comb-type pilot. PNFS algorithm can suppress phase noise, carrier frequency offset and even Doppler effect simultaneously in frequency domain. Through PNFS algorithm, SC-FDMA system has robust characteristic against ICI of performance degradation. Moreover, in these days, most electronic communication systems are weak to jamming. So, frequency-hopped (FH) scheme, which is one kind of spread spectrum techniques as a means of making performance better to supplement a disadvantage of SC-FDMA system on jamming attack, is considered. The authors would like to analyse ICI and jamming in SC-FDMA system and employ FH technique in SC-FDMA system because existing studies have not considered the situation regarding ICI and jamming exist simultaneously in mobile channel. So, the authors analyse degradation factors in FH-SC-FDMA system about ICI and jamming signal categorised as partial band jamming and multi-tone jamming. Then, the proposed FH-SC-FDMA system using PNFS algorithm has strong performances about ICI and jamming.
Keywords :
Doppler effect; frequency division multiple access; frequency hop communication; intercarrier interference; interference suppression; spread spectrum communication; Doppler effect; SC-FDMA system; comb-type pilot; electronic communication systems; frequency-hopped communication system; intersubcarrier interference compensation; jamming signal; mobile channel; multitone jamming; partial band jamming; phase noise and frequency offset suppression algorithm; phase noise suppression algorithm; single-carrier frequency division multiple access; spread spectrum techniques;
Journal_Title :
Communications, IET
DOI :
10.1049/iet-com.2009.0542