Fukui, Daiki and Takahashi, Yuhei and Song, Guanghui and Kimura, Tomotaka and Liu, Zilong and Cheng, Jun (2026) Sum-Rate Analysis of Slotted ALOHA with Buffered Inter- and Intra-Slot SIC under Mixture Gamma Fading. IEICE Transactions on Communications. DOI https://doi.org/10.23919/transcom.2025EBP3174
Fukui, Daiki and Takahashi, Yuhei and Song, Guanghui and Kimura, Tomotaka and Liu, Zilong and Cheng, Jun (2026) Sum-Rate Analysis of Slotted ALOHA with Buffered Inter- and Intra-Slot SIC under Mixture Gamma Fading. IEICE Transactions on Communications. DOI https://doi.org/10.23919/transcom.2025EBP3174
Fukui, Daiki and Takahashi, Yuhei and Song, Guanghui and Kimura, Tomotaka and Liu, Zilong and Cheng, Jun (2026) Sum-Rate Analysis of Slotted ALOHA with Buffered Inter- and Intra-Slot SIC under Mixture Gamma Fading. IEICE Transactions on Communications. DOI https://doi.org/10.23919/transcom.2025EBP3174
Abstract
This paper presents an analytical framework for Buffered-SIC (successive interference cancellation) slotted ALOHA (BSIC-SA) systems with real-time feedback under composite fading channels. The BSIC-SA employs buffered inter-slot SIC to utilize the residual signals from previous slots and intra-slot SIC under random fading for enhanced packet recovery. The received signal-to-noise ratio (SNR) is modeled by a mixture gamma (MG) distribution, which generalizes the expo- nential SNR model of Rayleigh fading by incorporating both exponential and power terms in its probability density function (PDF). By exploiting the series representations of the lower and upper incomplete gamma functions, closed-form expressions for the state transition probabilities in the Markov process of a two-device system are derived. The transmission probability and coding rate are jointly optimized to maximize the achievable sum rate. Our proposed analysis accommodates various fading environments without requiring separate derivations for individual channel models. Numerical analyses and simulation results confirm the validity of the proposed framework and demonstrate the achievable maximum sum rate for multi-device BSIC-SA systems.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | slotted ALOHA, general composite fading channel, mixture gamma distribution, sum-rate, Markov model |
| Subjects: | Z Bibliography. Library Science. Information Resources > ZR Rights Retention |
| Divisions: | Faculty of Science and Health Faculty of Science and Health > Computer Science and Electronic Engineering, School of |
| SWORD Depositor: | Unnamed user with email elements@essex.ac.uk |
| Depositing User: | Unnamed user with email elements@essex.ac.uk |
| Date Deposited: | 28 Jul 2026 09:09 |
| Last Modified: | 28 Jul 2026 09:19 |
| URI: | http://repository.essex.ac.uk/id/eprint/43641 |
Available files
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Licence: Creative Commons: Attribution 4.0