Title :
Performance Analysis of PT-MMA and PT-DDMLA and PT-DDAA for OFDM in Wireless Communication
Author :
Naeeni, Babak Haji Bagher ; Amind, Hamidreza
Author_Institution :
Sci. & Res. Branch, Islamic Azad Univ., Tehran
Abstract :
In this paper we introduce a new blind adaptive per tone equalization (PT-MMA) and a new per tone phase error detection and correction (PT-DDMLA & PT- DDAA) that does not use any pilot tones, for OFDM systems. The proposed equalizer scheme consists of a (complex) equalizer per tone. In this scheme, we compare the performance of the per tone multimodulus algorithm (PT-MMA) with per tone decision-directed maximum likelihood algorithm (PT-DDMLA) and per tone decision-directed arctangent algorithm. The PT-MMA performs joint blind equalization and carrier recovery without the need for a separate carrier-recovery system for QAM signal constellations. The PT-MMA compensates for an additional carrier frequency offset (CFO). The results of our simulations indicate that the PT-MMA can correct the phase error, because it implicitly incorporates a phase-tracking loop, which automatically recovers carrier phase and in comparison with PT-DDMLA & PT-DDAA has a better performance from the viewpoint of carrier phase error correction
Keywords :
OFDM modulation; adaptive equalisers; blind equalisers; error correction; error detection; maximum likelihood detection; quadrature amplitude modulation; radiocommunication; CFO; OFDM; PT-DDAA; PT-DDMLA; PT-MMA; QAM signal constellation; blind adaptive per tone equalization; carrier frequency offset; carrier recovery; orthogonal frequency division multiplexing system; per tone decision-directed arctangent algorithm; per tone decision-directed maximum likelihood algorithm; per tone multimodulus algorithm; phase error correction; phase error detection; phase-tracking loop; quadrature amplitude modulation; Adaptive equalizers; Blind equalizers; Constellation diagram; Error correction; Maximum likelihood detection; OFDM; Performance analysis; Phase detection; Quadrature amplitude modulation; Wireless communication; orthogonal frequency Division multiplexing (OFDM); per tone decision-directed arctangent algorithm (PT-DDAA); per tone decision-directed maximum likelihood algorithm (PT-DDMLA); per tone multimodulus algorithm (PT-MMA);
Conference_Titel :
TENCON 2006. 2006 IEEE Region 10 Conference
Conference_Location :
Hong Kong
Print_ISBN :
1-4244-0548-3
Electronic_ISBN :
1-4244-0549-1
DOI :
10.1109/TENCON.2006.343714