Title :
Linear MMSE channel estimation for GSM
Author :
Baltersee, Jens ; Fock, Gunnar ; Meyr, Heinrich ; Yiin, Lihbor
Author_Institution :
Integrated Signal Process. Syst., Aachen Univ. of Technol., Germany
Abstract :
A new channel estimation algorithm capable of exploiting a-priori knowledge about modulation and receive filters and the power delay profile of the physical channel is presented. In order to incorporate the a-priori knowledge into the linear minimum mean square error (LMMSE) channel estimator, a Bayesian approach is applied to an appropriate GSM system model. The performance of the new algorithm is compared to a conventional least squares (LS) channel estimator by means of analysis and simulations. Simulations are carried out for the standard GSM channel profiles (TU50, HT100, RA250). Information about the shape of the power delay profile is assumed to be unavailable to the receiver. The merit of the new channel estimator is confirmed by yielding an MSE approximately 1-2 dB lower than the LS estimator. The lower MSE translates into a BER advantage of approximately 0.25 dB. Exploiting additional knowledge about the shape of the power delay profile results in further BER performance improvements of up to 0.3 dB.
Keywords :
Bayes methods; cellular radio; error statistics; least mean squares methods; parameter estimation; BER performance; Bayesian approach; GSM channel profiles; GSM system model; HT100; LS estimator; MSE; RA250; TU50; channel estimation algorithm; least squares channel estimator; linear MMSE channel estimation; linear minimum mean square error; modulation; physical channel; power delay profile shape; receive filters; simulations; Bayesian methods; Bit error rate; Channel estimation; Delay estimation; GSM; Least squares approximation; Mean square error methods; Power filters; Shape; Yield estimation;
Conference_Titel :
Global Telecommunications Conference, 1999. GLOBECOM '99
Print_ISBN :
0-7803-5796-5
DOI :
10.1109/GLOCOM.1999.831756