Abstract :
We investigate layered space-time equalization (LSTE) architectures for multiple-input multiple-output (MIMO) frequency-selective channels. At each stage or layer of detection, a MIMO delayed decision feedback sequence estimator (MIMO-DDFSE) is used to tentatively detect a group of selected data streams, among which a subgroup of data streams are output and are canceled from the received signals. With the proposed architectures, the numbers of the tentatively detected data streams and output data streams can be different at different LSTE stages, while the MIMO-DDFSE can also reduce to the special cases of multiple-input single-output decision feedback equalizer (MISO-DFE), MISO-DDFSE, and MIMO-DFE, allowing tradeoffs between performance and complexity. We also derive the equalizer coefficients, discuss timing recovery, and consider channel estimation. Simulation results demonstrate the performance of the proposed LSTE structures and the tradeoffs between performance and complexity of the multistage structure and the single-stage version. We also demonstrate the impact of imperfect channel estimation, imperfect interference cancellation, the number of receive antennas, filter length, and oversampling on performance.
Keywords :
MIMO systems; channel estimation; computational complexity; decision feedback equalisers; delays; interference suppression; radiofrequency interference; receiving antennas; signal detection; synchronisation; MIMO frequency-selective channels; MIMO-DDFSE; MISO-DFE; channel estimation; complexity; data streams detection; decision feedback equalizer; delayed decision feedback sequence estimator; equalizer coefficients; filter length; imperfect channel estimation; imperfect interference cancellation; layered space-time equalization; multiple-input multiple-output channels; multiple-input single-output DFE; multistage structure; output data streams; oversampling; receive antennas; simulation results; system performance; timing recovery; wireless MIMO systems; Channel estimation; Decision feedback equalizers; Delay estimation; Filters; Frequency; Interference cancellation; MIMO; Output feedback; Receiving antennas; Timing;