Title :
Noncoherent OSTBC-OFDM for MIMO and Cooperative Communications: Perfect Channel Identifiability and Achievable Diversity Order
Author :
Chang, Tsung-Hui ; Ma, Wing-Kin ; Huang, Chuan-Yuan ; Chi, Chong-Yung
Abstract :
This paper considers the context of orthogonal space-time block coded OFDM (OSTBC-OFDM) without channel state information at the receiver. Assuming noncoherent maximum-likelihood detection, the interest herein lies in detection within one OSTBC-OFDM block, motivated by its capability of accommodating relatively fast block fading channels. Our investigation focuses on analysis aspects, where we seek to establish practical noncoherent BPSK/QPSK OSTBC-OFDM schemes that have provably good channel identifiability and diversity properties. We consider perfect channel identifiability (PCI), a strong condition guaranteeing unique noncoherent channel identification for any (nonzero) channel. Through a judicious design involving special OSTBCs and pilot placement, we propose an OSTBC-OFDM scheme that is PCI-achieving and consumes fewer pilots compared to conventional pilot-aided channel estimation methods. We further our analysis by showing that a PCI-achieving scheme also achieves maximal noncoherent spatial diversity for the Kronecker Gaussian spatial-temporal channel fading model, which covers the popular i.i.d. Rayleigh fading channel and a variety of correlated and sparse multipath channels. All these results are developed in parallel for the centralized point-to-point MIMO scenario and a distributed relay communication scenario. For the latter scenario, our diversity analysis shows that the PCI-achieving scheme can also achieve maximal noncoherent cooperative diversity. The performance merits of the proposed PCI-achieving scheme are demonstrated by simulations.
Keywords :
Gaussian channels; MIMO communication; OFDM modulation; Rayleigh channels; channel estimation; cooperative communication; diversity reception; maximum likelihood detection; modulation coding; multipath channels; orthogonal codes; quadrature phase shift keying; space-time block codes; Kronecker Gaussian spatial-temporal channel fading model; OSTBC-OFDM block scheme; PCI-achieving scheme; centralized point-to-point MIMO communication; cooperative communications; correlated multipath channels; distributed relay communication; diversity analysis; diversity order property; fast block fading channels; i.i.d Rayleigh fading channel; maximal noncoherent cooperative diversity; maximal noncoherent spatial diversity; noncoherent BPSK-QPSK schemes; noncoherent OSTBC-OFDM; noncoherent channel identification; noncoherent maximum-likelihood detection; orthogonal space-time block coded OFDM; perfect channel identifiability; pilot placement; pilot-aided channel estimation methods; receiver; sparse multipath channels; Channel estimation; Detectors; Fading; MIMO; OFDM; Relays; Vectors; Distributed space-time coding; OSTBC-OFDM; diversity; maximum-likelihood detection; noncoherent detection; unique channel identifiability;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2012.2200476