Title :
Exact BER Analysis for Square Orthogonal Space-Time Block Codes on Arbitrary Fading Channels with Imperfect Channel Estimation
Author :
Jacobs, Lennert ; Moeneclaey, Marc
Author_Institution :
TELIN Dept., Ghent Univ., Ghent
Abstract :
In this contribution, we examine the effect of imperfect channel estimation on the bit error rate (BER) performance of square orthogonal space-time block codes (OSTBCs). The propagation channels from the Nt transmit antennas to each of the Nt receive antennas are assumed to be affected by (possibly correlated) flat block fading with an arbitrary distribution. The transmitted symbols belong to a PAM or QAM constellation. The resulting average BER can easily be written as an expectation over 4NtNr real-valued random variables, but the computing time needed for its numerical evaluation increases exponentially with Nt and Nr. However, we point out that expressing the BER in terms of the distribution of the Frobenius norm of the channel matrix, allows to reduce the BER expression for any number of receive antennas to an expectation over only 2Ns + 2 random variables (with Ns denoting the number of information symbols in the OSTBC matrix). Due to the high diversity order of OSTBCs, the numerical evaluation of this expectation is much less time-consuming than a straightforward computer simulation. Moreover, the presented BER expression is useful not only when the fading distribution is given in closed form, but also when only experimental data (e.g. a histogram) on the fading are available.
Keywords :
block codes; channel estimation; error statistics; fading channels; orthogonal codes; receiving antennas; space-time codes; transmitting antennas; Frobenius norm; PAM constellation; QAM constellation; arbitrary fading channels; bit error rate; channel matrix; diversity order; exact BER analysis; imperfect channel estimation; numerical evaluation; propagation channels; random variables; receive antennas; square orthogonal space-time block codes; transmit antennas; Antennas and propagation; Bit error rate; Block codes; Channel estimation; Computer simulation; Fading; Quadrature amplitude modulation; Random variables; Receiving antennas; Transmitting antennas;
Conference_Titel :
Vehicular Technology Conference, 2009. VTC Spring 2009. IEEE 69th
Conference_Location :
Barcelona
Print_ISBN :
978-1-4244-2517-4
Electronic_ISBN :
1550-2252
DOI :
10.1109/VETECS.2009.5073545