English

Holographic MIMO Communications: Theoretical Foundations, Enabling Technologies, and Future Directions

Signal Processing 2023-08-29 v3 Information Theory math.IT

Abstract

Future wireless systems are envisioned to create an endogenously holography-capable, intelligent, and programmable radio propagation environment, that will offer unprecedented capabilities for high spectral and energy efficiency, low latency, and massive connectivity. A potential and promising technology for supporting the expected extreme requirements of the sixth-generation (6G) communication systems is the concept of the holographic multiple-input multiple-output (HMIMO), which will actualize holographic radios with reasonable power consumption and fabrication cost. The HMIMO is facilitated by ultra-thin, extremely large, and nearly continuous surfaces that incorporate reconfigurable and sub-wavelength-spaced antennas and/or metamaterials. Such surfaces comprising dense electromagnetic (EM) excited elements are capable of recording and manipulating impinging fields with utmost flexibility and precision, as well as with reduced cost and power consumption, thereby shaping arbitrary-intended EM waves with high energy efficiency. The powerful EM processing capability of HMIMO opens up the possibility of wireless communications of holographic imaging level, paving the way for signal processing techniques realized in the EM-domain, possibly in conjunction with their digital-domain counterparts. However, in spite of the significant potential, the studies on HMIMO communications are still at an initial stage, its fundamental limits remain to be unveiled, and a certain number of critical technical challenges need to be addressed. In this survey, we present a comprehensive overview of the latest advances in the HMIMO communications paradigm, with a special focus on their physical aspects, their theoretical foundations, as well as the enabling technologies for HMIMO systems. We also compare the HMIMO with existing multi-antenna technologies, especially the massive MIMO, present various...

Keywords

Cite

@article{arxiv.2212.01257,
  title  = {Holographic MIMO Communications: Theoretical Foundations, Enabling Technologies, and Future Directions},
  author = {Tierui Gong and Panagiotis Gavriilidis and Ran Ji and Chongwen Huang and George C. Alexandropoulos and Li Wei and Zhaoyang Zhang and Mérouane Debbah and H. Vincent Poor and Chau Yuen},
  journal= {arXiv preprint arXiv:2212.01257},
  year   = {2023}
}

Comments

double column, 60 pages, 26 figures, 11 tables, accepted by IEEE Communications Surveys and Tutorials

R2 v1 2026-06-28T07:20:35.478Z