Reduced complexity channel estimation for uplink receiver

H - Electricity – 04 – W

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H04W 24/00 (2009.01) H04W 24/08 (2009.01)

Patent

CA 2743442

The present invention proposes an LTE eNodeB receiver channel estimation technique that is referred to as reduced complexity minimum mean squared error (MMSE) technique for channel estimation. From the invention's assumptions, esti-mations and modified calculations, the present in-vention generates precise channel estimates of RS using the reduced complexity MMSE matrix and previously computed LS channel estimates H LS is as follows: (Formula I) which generates precise chan-nel estimates of RS using the reduced complexity MMSE matrix and previously computed LS channel estimates. As a second aspect of the present inven-tion, it is desired that the SNR be estimated within -3 dB of the actual channel SNR. As a third aspect of the invention, an adaptive method of data channel interpolation from RS channel is being proposed in this invention.

La présente invention concerne une technique d'évaluation de canal pour récepteur eNodeB d'équipement de terminaison de ligne, en l'occurrence, une technique d'erreur quadratique moyenne minimale ou "MMSE" (Minimum Mean Square Error) à complexité réduite pour évaluation des canaux. L'invention met en uvre des hypothèses, des évaluations et modifications calculées pour donner des évaluations précises des canaux de RS au moyen d'une matrice MMSE à complexité réduite. C'est ainsi que les évaluations des canaux de LS préalablement calculés, soit "HLS", peuvent être représentés par la formule (I). Cela permet de générer des évaluations de canaux précises de RS en utilisant la matrice MMSE à complexité réduite et les évaluations des canaux LS préalablement calculées. Un second aspect de la présente invention propose l'évaluation du rapport signal/bruit dans une limite de -3 dB du rapport signal/bruit de canal réel. Un troisième aspect de l'invention propose un procédé adaptatif d'interpolation des canaux de données à partir du canal de RS.

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