Equalization technique for compensating for degradation to...

H - Electricity – 04 – L

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H04L 27/01 (2006.01) H04L 25/03 (2006.01)

Patent

CA 2119625

An equalization technique for the compensation of degradation caused by multipath Rayleigh fading channels to the transmission of digitally modulatedsignals such as (see fig. I) Differential Quadrature Phase Shift Keying (DQPSK) modulated signals. The technique is applicable to both linear and nonlinear transversal equalizers. Based on the Method of Projection onto Convex Sets (POCS), the technique is realized in an iterative form. The convergence speed of equalization depends on the magnitude of a look-back parameter, and is comparable to the speed of recursive least square based equalizers. The computational complexity of the technique also is variable and is adaptable to the convergence speed requirements. For achieving convergence speeds as recursive least square techniques, the computational load required of the presented equalization is of the order of the load required of the recursive least square techniques, but its program implementation is exceedingly simpler. At the same time the code size, memory and power consumption requirements are lower.

Technique d'égalisation permettant de compenser la dégradation de la transmission de signaux à modulation numérique, p. ex. (voir fig. 1) des signaux DQPSK (modulation différentielle par déplacement de phase en quadrature), causée par des canaux avec évanouissement à distribution de Rayleigh par trajets multiples. La technique s'applique aux égalisateurs transversaux linéaires et non linéaires. Selon la méthode de projection sur ensembles convexes (POCS), la technique est réalisée sous forme itérative. La vitesse de convergence de l'égalisation dépend de la grandeur d'un paramètre rétrospectif, et est comparable à la vitesse d'égalisateurs récursifs à moindre carré. En outre, la complexité computationnelle de la technique est variable et adaptable en fonction des exigences de vitesse de convergence. Pour obtenir des vitesses de convergence sur la base de techniques récursives à moindre carré, la charge computationnelle exigée de l'égalisation présentée est de l'ordre de la charge exigée des techniques récursives à moindre carré, mais sa programmation est extrêmement plus simple. En même temps, la taille du code, la mémoire et la consommation d'énergie sont moindres.

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