2026· IEEE Transactions on Communications· Vol 74, pp. 13733-13747· 1 citation· 39 references
Abstract
Dynamic metasurface antennas (DMAs) have emerged as a promising solution for reducing cost and power consumption in next-generation wireless systems employing large antenna arrays. Existing studies on DMA-based architectures typically adopt a frequency-flat approximation to model the frequency response of individual elements, in which only the phase of each element is adjustable, while the amplitude tuning remains uninvolved. Additionally, this approximation is valid only for narrowband signaling and becomes increasingly inaccurate in wideband and ultra-wideband scenarios. In contrast, by adopting the accurate nonlinear frequency-selective Lorentzian-constrained model and jointly optimizing the resonance frequency and quality factor of each element, both the phase and magnitude responses are directly incorporated in the resource management process, thereby providing a more faithful representation of the frequency-dependent behavior of DMA elements in wideband and ultra-wideband systems. Motivated by this, we propose a rate-splitting multiple access (RSMA) design for DMA-based architectures using the frequency-selective Lorentzian model in wideband transmissions, aiming to maximize the minimum achievable sum rate across all subcarriers. To this end, we jointly optimize the transmit beamforming vectors across all subcarriers as well as the resonance frequency and the quality factor of all DMA elements. Simulation results indicate that the nonlinear frequency-selective Lorentzian model achieves an approximately 45% performance gain over the frequency-flat approximation in DMA architectures with RSMA for wideband transmissions.
In this paper, we investigate beamforming for a wideband terahertz (THz) communication system serving multiple users in the near-field region. A hybrid beamforming architecture employing fixed true time delays (FTTDs) and phase shifters (PSs) is introduced to reduce the spatial wideband effect. Both fully-connected (FC...
Wen-Qiang Chu, Qiu-Yan Liu, Yan-Xia Cao et al.· IEEE Transactions on Wireles...· 0 citations
Multi-frequency operation in beyond-5G and 6G systems renders the beam directions of large-aperture arrays inherently frequency-dependent, giving rise to beam misalignment effects that are particularly critical for reconfigurable intelligent surfaces (RISs). When an RIS phase profile is configured at one frequency but...
Mohammad Amin Saeidi, Hina Tabassum· IEEE Transactions on Wireles...· 0 citations
This paper analyzes the ergodic rate of a wideband reconfigurable intelligent surface (RIS)-assisted terahertz link under beam squint and finite-resolution phase control. Independent Rayleigh fading on the two RIS-assisted hops produces double-Rayleigh cascaded amplitudes. Exact second- and fourth-order channel moments...
W. Khalid, C. Kwong, David Chieng et al.· 0 citations
Wideband terahertz (THz) communication systems assisted by active reconfigurable intelligent surfaces (RIS) are susceptible to frequency dependent beam squint, which degrades the array gain at band edge subcarriers and reduces the achievable rate. In active RIS architectures, mitigating this effect requires the inserti...
Faran Awais Butt, A. A. Nasir, A. Muqaibel· IEEE Open Journal of the Com...· 0 citations
An uplink pinching-antenna system (PASS) is considered, where a segmented dielectric waveguide is employed to serve multiple users and one pinching antenna (PA) is activated on each segment. Extensive waveguide deployment reduces user-to-PA path loss but also creates differential propagation delays among the PA-assiste...
Chong-Jun Ouyang, Hao Jiang, Zhi-Guo Ding et al.· 0 citations
The increasing demand for high-gain, frequency-reconfigurable, and compact antennas has driven the development of advanced antenna architectures for next-generation communication systems. This paper presents a new frequency-reconfigurable transmitarray (TA) for X-band applications based on the integration of a Frequenc...
M. Iqbal, Mohd Fairus Mohd Yusoff, Mohamad Aiman Hadi et al.· 2026 IEEE International Conf...· 0 citations
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