Title :
Optimal OFDM pilot sequences for time-delay and channel estimation based on the expected CRB for a large number of subcarriers
Author :
Shahmansoori, Arash ; Montalban, Rafael ; Seco-Granados, Gonzalo
Author_Institution :
Univ. Autonoma de Barcelona, Bellaterra, Spain
Abstract :
A key aspect to design an OFDM system for combined positioning and high-data-rate communications is to find optimal data and pilot power allocations. Previous work has investigated the capacity maximizing design taking into account the effects of channel and time-delay estimation for finite number of subcarriers and channel taps. In this paper, we propose a method based on the asymptotic expected Cramér-Rao bound of joint time-delay and channel coefficients that reduces the complexity of the bounds by increasing the number of subcarriers or channel taps for data and pilot power allocations design. Specifically, for long channels a general form of matrix inversion, which is computationally complex, is converted to only the inversion at strong eigenvalues or pilots. Numerical results show that as the number of subcarriers increases, the non-asymptotic bounds converge to the asymptotic bounds at a fast speed. Moreover, even for a finite number of subcarriers or channel taps the difference between joint data and pilot power allocations is negligible compared to the non-asymptotic expected Cramér-Rao bounds.
Keywords :
OFDM modulation; channel estimation; data communication; delays; eigenvalues and eigenfunctions; telecommunication channels; CRB; OFDM system; asymptotic bounds; asymptotic expected Cramέr-Rao bound; channel coefficients; channel estimation; eigenvalues; high-data-rate communications; matrix inversion; optimal OFDM pilot sequences; optimal data; pilot power allocations; power allocations design; time delay; time-delay estimation; Channel estimation; Estimation; Joints; OFDM; Resource management; Signal processing; Wireless communication; Combined positioning and communications; OFDM; asymptotic expected Cramér-Rao bound; channel and time-delay estimation; joint design of data and pilot power allocations;
Conference_Titel :
Signal Processing Advances in Wireless Communications (SPAWC), 2014 IEEE 15th International Workshop on
Conference_Location :
Toronto, ON
DOI :
10.1109/SPAWC.2014.6941323