Spectral Efficiency Maximization for DMA-enabled Multiuser MISO with Statistical CSI
Hao Xu, Boyu Ning, Chongjun Ouyang, and Hongwen Yang

TL;DR
This paper explores maximizing spectral efficiency in DMA-enabled multiuser MISO systems using only statistical CSI, proposing novel algorithms for uplink and downlink optimization validated by numerical results.
Contribution
It introduces new optimization algorithms for spectral efficiency maximization in DMA-enabled systems using statistical CSI, applicable to fast-varying channels.
Findings
Proposed algorithms outperform baseline schemes.
Derived closed-form surrogates for ergodic sum rate.
Algorithms are effective across various DMA configurations.
Abstract
Dynamic metasurface antennas (DMAs) offer the potential to achieve large-scale antenna arrays with low power consumption and reduced hardware costs, making them a promising technology for future communication systems. This paper investigates the spectral efficiency (SE) of DMA-enabled multiuser multiple-input single-output (MISO) systems in both uplink and downlink transmissions, using only statistical channel state information (CSI) to maximize the ergodic sum rate of multiple users. For the uplink system, we consider two decoding rules: minimum mean square error (MMSE) with and without successive interference cancellation (SIC). For both decoders, we derive closed-form surrogates to substitute the original expressions of ergodic sum rate and formulate tractable optimization problems for designing DMA weights. Then, a weighted MMSE (WMMSE)-based algorithm is proposed to maximize the…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Advanced MIMO Systems Optimization · Millimeter-Wave Propagation and Modeling
