Title :
On ICI canceller for mobile OFDM DTV receivers
Author :
Hai Minh Tran ; Wada, Tomotaka
Author_Institution :
Grad. Sch. of Eng. & Sci., Univ. of the Ryukyus, Okinawa, Japan
Abstract :
In mobile environment, the performance of OFDM mobile receivers is degraded severely because of Inter-Carrier-Interference (ICI) caused by Doppler Spread. So ICI canceller is an important task for designers of mobile OFDM receivers. The works of Fischer et al. (2003) and Mostofi and Cox (2005) proposed an efficient method to reduce ICI. The main idea of this method is to linearly approximate time varying channel within one OFDM symbol. Then a large ICI matrix equation is given. However the estimated values of the channel transfer function - the diagonal of the ICI matrix is corrupted by ICL Consequently, the equalized signal still is distorted. In this paper, we propose an iterative method to improve performance of the conventional method. We implement Jacobi iteration method to solve the big ICI matrix equation. Thereby, we are able to implement ICI canceller by a simple FIR filter rather than finding the inverse of ICI matrix. Next, at second iteration of Jacobi method, we improve the accuracy the diagonal by removing ICI from pilot symbols and re-estimating the channel transfer function. Simulation results for ISDB-T mode 3 demonstrated that our method could double performance of the conventional method under TU-6 channel and Doppler Spread. The improvement is better for two paths and one path Doppler channel.
Keywords :
Doppler effect; FIR filters; Jacobian matrices; OFDM modulation; digital television; intercarrier interference; iterative methods; mobile television; television receivers; transfer function matrices; Doppler channel; Doppler spread; FIR filter; ICI canceller; ICI matrix equation; ISDB-T mode 3; Jacobi iteration method; OFDM mobile receiver; TU-6 channel; channel transfer function reestimation; equalized signal; intercarrier interference; iterative method; mobile OFDM DTV receivers; pilot symbol; Approximation methods; Equations; Finite impulse response filters; Jacobian matrices; Mathematical model; OFDM; Transfer functions; Digital television (DTV); Inter-Carrier Interference (ICI); Jacobi Iteration; Orthogonal frequency-division multiplexing (OFDM);
Conference_Titel :
Advanced Communication Technology (ICACT), 2014 16th International Conference on
Conference_Location :
Pyeongchang
Print_ISBN :
978-89-968650-2-5
DOI :
10.1109/ICACT.2014.6779185