4.7 Article

Hybrid RIS and DMA Assisted Multiuser MIMO Uplink Transmission With Electromagnetic Exposure Constraints

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JSTSP.2022.3174701

关键词

Wireless communication; MIMO communication; Antenna arrays; Uplink; Optimization; Metamaterials; Electromagnetics; Dynamic metasurface antennas (DMAs); electromagnetic (EM) exposure; multiuser MIMO; partial CSI; reconfigurable intelligent surface (RIS)

资金

  1. National Key Research and Development Program of China [2018YFB1801103]
  2. National Natural Science Foundation of China [62171240, 61801114]
  3. Jiangsu Province Basic Research Project [BK20192002]
  4. Open Research Fund of the State Key Laboratory of Integrated Services Networks, Xidian University [ISN23-02]
  5. Fundamental Research Funds for the Central Universities [2242021R41148]
  6. Young Elite Scientist Sponsorship Program by the China Institute of Communications

向作者/读者索取更多资源

In this study, we investigate the problem of maximizing spectral efficiency in uplink transmission under EM constraints. We reduce electromagnetic radiation and preserve the quality of communication service by optimizing transmit covariance, RIS phase shift, and DMA weight matrices. Numerical results confirm the effectiveness of this scheme.
In thefifth-generation and beyond era, reconfigurable intelligent surface (RIS) and dynamic metasurface antennas (DMAs) are emerging metamaterials keeping up with the demand for high-quality wireless communication services, which promote the diversification of portable wireless terminals. However, along with the rapid expansion of wireless devices, the electromagnetic (EM) radiation increases unceasingly and inevitably affects public health, which requires a limited exposure level in the transmission design. To reduce the EM radiation and preserve the quality of communication service, we investigate the spectral efficiency (SE) maximization with EM constraints for uplink transmission in hybrid RIS and DMA assisted multiuser multiple-input multiple-output systems. Specifically, alternating optimization is adopted to optimize the transmit covariance, RIS phase shift, and DMA weight matrices. We first figure out the water-filling solutions of transmit covariance matrices with given RIS and DMA parameters. Then, the RIS phase shift matrix is optimized via the weighted minimum mean square error, block coordinate descent and minorization-maximization methods. Furthermore, we solve the unconstrainted DMA weight matrix optimization problem in closed form and then design the DMA weight matrix to approach this performance under DMA constraints. Numerical results confirm the effectiveness of the EM aware SE maximization transmission scheme over the conventional baselines.

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