Title :
High-accuracy phase-equalization filter design using iterative linear-programming technique
Author_Institution :
Dept. of Inf. Sci., Toho Univ., Funabashi, Japan
Abstract :
In digital communications, non-linear phase channels are equalized by using a phase-equalization filter such that the whole phase responses of the communication channels are linear and the signal waveforms are not distorted after the transmission. This paper presents an iterative linear-programming (LP) technique for designing an all-pass (AP) phase-equalization filter such that its phase response fits a given ideal phase response in the minimax error sense. The AP phase-equalization filter design is formulated as an iterative LP problem and the optimal coefficients of the digital AP system are found through iteratively solving the LP problems. As compared with the existing LP design and the second-order-cone programming (SOCP)-based design, the proposed iterative LP design method achieves much more accurate fitting. We will use a design example to demonstrate the performance improvement.
Keywords :
all-pass filters; convex programming; digital communication; iterative methods; linear programming; telecommunication channels; SOCP based design; all-pass phase-equalization filter design; digital AP system optimal coefficients; digital communication; iterative LP problem; iterative linear programming technique; nonlinear phase channels; second-order cone programming; Approximation methods; Delays; Finite impulse response filters; Iterative methods; Numerical stability; Programming; Vectors;
Conference_Titel :
Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), 2014 11th International Conference on
Conference_Location :
Nakhon Ratchasima
DOI :
10.1109/ECTICon.2014.6839745