Aug 2026· 2026 IEEE/CIC International Conference on Communications in China (ICCC)· pp. 1764-1769· 0 citations· 13 references
Abstract
Cell-free massive multiple-input multiple-output (CF-mMIMO) is a promising architecture for future wireless networks, yet its practical deployment is severely hindered by hardware impairments and time-varying channel conditions. To address these challenges, we investigate downlink transmission in a rate-splitting multiple access (RSMA)-aided CF-mMIMO system under multiple classes of non-idealities, including channel aging, local oscillator phase noise, and analog-to-digital converter quantization distortion. By explicitly modeling these practical impairments, we first derive the linear minimum mean square error channel estimator and subsequently obtain tight closed-form expressions for the achievable rate under imperfect channel state information. Extensive numerical results validate the accuracy of our theoretical analysis and quantify the performance degradation induced by the joint effects of multi-class impairments. Furthermore, the results demonstrate that owing to its flexible interference management, RSMA exhibits significantly stronger robustness and superior spectral efficiency compared to the conventional space-division multiple access strategy under non-ideal conditions.
Cell-free massive multiple-input multiple-output (CF-mMIMO) is a promising architecture for future sixth-generation (6G) wireless networks because cooperation among geographically distributed access points enables seamless connectivity, more uniform quality of service, and improved spectral and energy efficiency. Howev...
Malek Abida, Eric P. Simon, D. Gaillot et al.· IEEE Open Journal of the Com...· 0 citations
A time-evolving RCE model is developed that characterizes the joint effects of residual phase mismatches, residual carrier frequency offsets, and oscillator phase noise, and a Gauss--Legendre quadrature-based weighted minimum mean square error (WMMSE) optimization framework is developed.
Mingjun Sun, Xi-Dong Mu, Shaochuan Wu et al.· 0 citations
This paper investigates the outage performance of an IRS-assisted cell-free massive multiple-input multiple-output (MIMO) system for ultra-reliable low-latency communication (URLLC) scenarios. The direct and cascaded channels are modeled using Rician fading distributions, and maximum ratio transmission (MRT) precoding...
Zi-Han Lin· International Conference on...· 0 citations
The extra-large multiple-input–multiple-output (XL-MIMO) technique has demonstrated significant potential for future wireless communications. In this article, we investigate the joint channel estimation (CE) and active user detection (AUD) for massive grant-free access in XL-MIMO systems. The conventional efficient joi...
Jia-Wei Zhuang, Jiaqi Fang, Gang Sun et al.· IEEE Internet of Things Jour...· 0 citations
Repeater-assisted massive MIMO (RA-MIMO) provides a cost-effective solution for distributed macro-diversity without the high-capacity fronthaul of cell-free architectures. However, the distributed deployment of repeaters introduces propagation delay differences and timing misalignments, causing asynchronous reception a...
Massive Multiple-Input Multiple-Output (MIMO) is a key enabling technology for fifth-generation (5G) and beyond wireless communication systems because of its ability to greatly enhance both spectral efficiency (SE) and energy efficiency (EE). However, maximizing these two performance metrics simultaneously remains a ch...
Raed S. M. Daraghma· Journal of Low Power Electro...· 0 citations
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