2026· IEEE Open Journal of the Communications Society· Vol 7, pp. 11391-11409· 0 citations· 59 references
TL;DR
The results show that MMD closely outperforms fixed and random allocation and closely follows the single-user proportional fair (PF) benchmark, while RRH cooperation, frequency diversity, dominant-interferer protection, additional transmit antennas, and larger RIS sizes improve reliability and effective goodput.
Abstract
Industrial ultra-reliable low-latency communication (URLLC) is challenging under blocked propagation, dense radio deployments, and residual co-channel interference. This paper develops an outage-driven analytical and subband-allocation framework for RIS-assisted industrial radio access networks. The considered downlink system combines an RIS-assisted blocked serving link, cooperative remote radio heads (RRHs) that provide redundant desired-signal transmission, and non-cooperating RRHs that generate subband-dependent interference over shared OFDMA resources. The desired received power is approximated using moment-matched Gamma random variables, whereas the aggregate interference is characterized through a hypoexponential distribution. Based on these models, tractable closed-form per-subband outage expressions are derived for RIS-only and RIS-assisted cooperative transmission. The resulting outage probabilities are used to construct reliability weights for an interference-aware max-matching diversity (MMD) subband assignment. For fixed feasible interference-activity and cooperation patterns, the proposed MMD method attains the same minimum outage objective as exhaustive search at the design threshold, while requiring only subband-wise weight computation and sorting. Monte Carlo simulations validate the analytical expressions. The results further show that MMD closely outperforms fixed and random allocation and closely follows the single-user proportional fair (PF) benchmark, while RRH cooperation, frequency diversity, dominant-interferer protection, additional transmit antennas, and larger RIS sizes improve reliability and effective goodput.
Reconfigurable intelligent surfaces (RISs) and non-orthogonal multiple access (NOMA) are often analyzed under idealized assumptions such as fully active RIS panels, perfect phase control, and cooperative relaying models that neglect RIS control energy. These assumptions can overestimate reliability in hardware-constrai...
S. Awad, Mohammed Abdel-Hafez· IEEE Access· 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...
Simultaneous wireless information and power transfer (SWIPT) has become a key enabler for sustaining energy-constrained Internet-of-Things (IoT) devices, while simultaneous transmission and reflection reconfigurable intelligent surfaces (STAR-RIS) provide enhanced coverage and beamforming flexibility by serving users o...
Anh-Tu Le, Thai-Hoc Vu, T. N. Nguyen et al.· IEEE Transactions on Communi...· 0 citations
This work presents a protocol-level framework that unifies ADT-enabled SDMA, OFDMA, and strict FFR within an intensity-modulation direct-detection DCO-OFDM model, and provides a reproducible benchmark for dense LiFi resource management.
Mostafa Mohamed, H. Ibrahim, Ali H. Ahmed et al.· Scientific Reports· 0 citations
A unified RIS-RSMA optimization framework for asynchronous downlink CF-MIMO and targeted comparisons using WMMSE and regularized zero-forcing private precoders, together with the common-power allocation results, support the need for joint common/private precoder design.
Ghadir Dogim, Ahmed E. El-Mahdy, Falko Dressler· IEEE Open Journal of the Com...· 0 citations
A fluid-antenna-assisted distributed joint decoder for cell-free massive MIMO URA and the framework provides a feasible integration of fluid antennas and cell-free URA and motivates end-to-end evaluation under pilot collisions and switching overhead.
Li Hu, J. Dang, Zai-Chen Zhang· 0 citations
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