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Get Free AccessIn this paper, we propose a new multiple-input multiple-output (MIMO) communication system with movable antennas (MAs) to exploit the antenna position optimization for enhancing the capacity. Different from conventional MIMO systems with fixed-position antennas (FPAs), the proposed system can flexibly change the positions of transmit/receive MAs, such that the MIMO channel between them is reconfigured to achieve higher capacity. We aim to characterize the capacity of MA-enabled point-to-point MIMO communication systems, by jointly optimizing the positions of transmit and receive MAs as well as the covariance of transmit signals. First, we develop an efficient alternating optimization algorithm to find a locally optimal solution by iteratively optimizing the transmit covariance matrix and the position of each transmit/receive MA with the other variables being fixed. Next, we propose alternative algorithms of lower complexity for capacity maximization in the low-SNR regime and for the multiple-input single-output (MISO) and single-input multiple-output (SIMO) cases. Numerical results show that our proposed MA systems significantly improve the MIMO channel capacity compared to traditional FPA systems as well as various benchmark schemes, and useful insights are drawn into the capacity gains of MA systems.
Wenyan Ma, Lipeng Zhu, Rui Zhang (2023). MIMO Capacity Characterization for Movable Antenna Systems. IEEE Transactions on Wireless Communications, 23(4), pp. 3392-3407, DOI: 10.1109/twc.2023.3307696.
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Type
Article
Year
2023
Authors
3
Datasets
0
Total Files
0
Language
English
Journal
IEEE Transactions on Wireless Communications
DOI
10.1109/twc.2023.3307696
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