paper-with-me

홈 › Papers

Wavenumber-Division Multiplexing in Line-of-Sight Holographic MIMO Communications

2021-06-23 · Luca Sanguinetti, Antonio A. D'Amico, Merouane Debbah

Starting from first principles of wave propagation, we consider a multiple-input multiple-output (MIMO) representation of a communication system between two spatially-continuous volumes. This is the concept of holographic MIMO communications. The analysis takes into account the electromagnetic interference, generated by external sources, and the constraint on the physical radiated power. The electromagnetic MIMO model is particularized for a pair of parallel line segments in line-of-sight conditions. Inspired by orthogonal-frequency division-multiplexing, we assume that the spatially-continuous transmit currents and received fields are represented using the Fourier basis functions. In doing so, a wavenumber-division multiplexing (WDM) scheme is obtained, which is not optimal but can be efficiently implemented. The interplay among the different system parameters (e.g., transmission range, wavelength, and sizes of source and receiver) in terms of number of communication modes and level of interference among them is studied with conventional tools of linear systems theory. Due to the non-finite support (in the spatial domain) of the electromagnetic channel, WDM cannot provide non-interfering communication modes. The interference decreases as the receiver size grows, and goes to zero only asymptotically. Different digital processing architectures, operating in the wavenumber domain, are thus used to deal with the interference. The simplest implementation provides the same spectral efficiency of a singular-value decomposition architecture with water-filling when the receiver size is comparable to the transmission range. The developed framework is also used to represent a classical MIMO system and to make comparisons. It turns out that the latter achieves better performance only when a higher number of radio-frequency chains is used.

📄 PDF Abstract BibTeX arXiv:2106.12531

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Channel Estimation for Holographic MIMO: Wavenumber-Domain Sparsity Inspired Approaches

2024-05-09 · Yuqing Guo, Yuanbin Chen, Ying Wang

This paper investigates the sparse channel estimation for holographic multiple-input multiple-output (HMIMO) systems. Given that the wavenumber-domain representation is based on a series of Fourier harmonics that are in …

compressed sensing

High-Speed FHD Full-Color Video Computer-Generated Holography

2025-08-27 · Haomiao Zhang, Miao Cao, Xuan Yu, Hui Luo 외 arxiv

Computer-generated holography (CGH) is a promising technology for next-generation displays. However, generating high-speed, high-quality holographic video requires both high frame rate display and efficient computation, …

Computational Efficiency

Wavenumber Domain Sparse Channel Estimation in Holographic MIMO

2024-03-17 · Xufeng Guo, Yuanbin Chen, Ying Wang, Zhaocheng Wang 외

In this paper, we investigate the sparse channel estimation in holographic multiple-input multiple-output (HMIMO) systems. The conventional angular-domain representation fails to capture the continuous angular power spec…

CDMA and Non-Uniform Multiplexing: Dynamic Range in MIMO Radar Waveforms

2024-08-26 · Aitor Correas-Serrano, Nikita Petrov, Maria Gonzalez-Huici, Alexander Yarovoy

This paper presents a performance comparison of various MIMO radar multiplexing approaches where the increasing number of transmitters adversely affects the dynamic range of the resultant MIMO system. The investigated mu…

Enhanced Atmospheric Turbulence Resiliency with Successive Interference Cancellation DSP in Mode Division Multiplexing Free-Space Optical Links

2022-07-19 · Yiming Li, Zhaozhong Chen, Zhouyi Hu, David M. Benton 외

We experimentally demonstrate the enhanced atmospheric turbulence resiliency in a 137.8 Gbit/s/mode mode-division multiplexing free-space optical communication link through the application of a successive interference ca…