Title :
Near-Optimal Waveform Design for Sum Rate Optimization in Time-Reversal Multiuser Downlink Systems
Author :
Yu-Han Yang ; Beibei Wang ; Lin, W.S. ; Liu, K.J.R.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Maryland, College Park, MD, USA
Abstract :
Utilizing channel reciprocity, the traditional time-reversal technique boosts the signal-to-noise ratio at the receiver with very low transmitter complexity. However, the large delay spread gives rise to severe inter-symbol interference (ISI) when the data rate is high, and the achievable transmission rate is further degraded in the multiuser downlink due to the inter-user interference (IUI). In this work, we study the weighted sum rate optimization problem by means of waveform design in the time-reversal multiuser downlink where the receiver processing is based on a single sample. Power allocation has a significant impact on the waveform design problem. We propose a new power allocation algorithm named Iterative SINR Waterfilling, which is able to achieve comparable sum rate performance to that of globally optimal power allocation. We further propose another approach called Iterative Power Waterfilling for multiple data streams. Iterative SINR Waterfilling provides better performance than Iterative Power Waterfilling in the scenario of high interference, while Iterative Power Waterfilling can work under multiple data streams. Simulation results show the superior performance of the proposed algorithms in comparison with other waveform designs such as zero-forcing and conventional time-reversal waveform.
Keywords :
MIMO communication; interference (signal); iterative methods; multi-access systems; optimisation; waveform analysis; ISI; IUI; channel reciprocity; conventional time-reversal waveform; data rate; data streams; globally optimal power allocation; intersymbol interference; interuser interference; iterative SINR waterfilling; iterative power waterfilling; near-optimal waveform design; receiver processing; signal-to-noise ratio; sum rate performance; time-reversal multiuser downlink systems; time-reversal technique; transmission rate; transmitter complexity; waveform design problem; waveform designs; weighted sum rate optimization problem; zero-forcing waveform; Downlink; Interference; Optimization; Resource management; Signal to noise ratio; Vectors; Time reversal; multiuser downlink; waveform design;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2012.120312.120572