Title :
Channel capacity for linearly precoded multiuser MIMO for discrete constellations
Author :
Ghaffar, Rizwan ; Knopp, Raymond
Author_Institution :
Eurecom, Sophia Antipolis, France
Abstract :
This paper is based on the idea of exploiting the discrete constellation alphabets in linear precoding for the downlink of multiuser (MU) MIMO. We study the effect of discrete constellation inputs on the sum rate of different linear precoders while confining ourselves to the case of two single antenna users. We show that contrary to the case of Gaussian alphabets where altruistic solutions as interference cancellation (channel inversion - CI) and interference attenuation (regularized channel inversion - RCI) are the recommended strategies for linear precoding, it is beneficial not to attenuate or cancel the MU interference, if it is coming from discrete constellations. This interference belonging to finite sized constellations has a structure which can be effectively exploited in improving the error resilience at the users. Under such a scenario, it is better to use the degrees of freedom available at the transmitter to improve the desired signal strength at the users instead of utilizing them to nullify or attenuate the undesired signals (interferences) at the users. Therefore the egoistic linear solutions as matched filter (MF) based precoding bears the potential of enhanced sum rate and improved performance as compared to the altruistic linear solutions.
Keywords :
Gaussian processes; MIMO communication; antennas; channel capacity; filtering theory; interference (signal); linear codes; multi-access systems; Gaussian alphabets; MU interference; channel capacity; different linear precoders; discrete constellation alphabets; discrete constellations; egoistic linear solutions; finite sized constellations; interference attenuation; interference cancellation; linear precoding; linearly precoded multiuser MIMO; matched filter; regularized channel inversion; signal strength; single antenna users; Broadcasting; Channel capacity; Decoding; Downlink; Interference cancellation; Interference constraints; MIMO; Mutual information; Receiving antennas; Transmitters;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 2009 IEEE 20th International Symposium on
Conference_Location :
Tokyo
Print_ISBN :
978-1-4244-5122-7
Electronic_ISBN :
978-1-4244-5123-4
DOI :
10.1109/PIMRC.2009.5450076