A Spatial Modulation-Based Time and Bandwidth Sharing NOMA Framework for Enhanced IoT Connectivity at Cell Edges

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V. Siva Bhaskara Rao
B. Suribabu Naick

บทคัดย่อ

The Non-Orthogonal Multiple Access (NOMA) has attracted every wireless communication network based on its flexibility and scalability. However, handling or functioning the NOMA system for a specific wireless communication system, such as cellular or sensor networks, became a complicated task. In this present study, the User Pairing Spatial Modulation NOMA (UPSM-NOMA) has been considered, and its efficiency was improved by implementing the novel decision tree Fossa Resource Allocation (DTFRA). Initially, as per the need, UPSM-NOMA was designed in the MATLAB environment, and then a novel optimized resource allocation process was executed with the help of Fossa's optimal best solution. The considered resources for this present study are the spectral sources. Finally, the performance of the designed optimal UPSM-NOMA was compared with other traditional NOMA in terms of Bit Error Rate (BER), sum rate band throughput. In every aspect, the proposed NOMA has gained the finest solution.

Article Details

รูปแบบการอ้างอิง
V. Siva Bhaskara Rao, & B. Suribabu Naick. (2026). A Spatial Modulation-Based Time and Bandwidth Sharing NOMA Framework for Enhanced IoT Connectivity at Cell Edges. Science & Technology Asia, 31(3), 160–172. สืบค้น จาก https://ph02.tci-thaijo.org/index.php/SciTechAsia/article/view/260478
ประเภทบทความ
Engineering

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Ahmed M, Shahwar M, Khan F, Khan WU, Ihsan A, Khan US, Xu F, Chatzinotas S. NOMA-based backscatter communications: Fundamentals, applications, and advancements. IEEE Internet of Things Journal. 2024;11(11):19303-27.

Omheni N, Ksiksi A, Obaidat MS, Hsiao KF. NOMA based mobility-aware load balancing in 5G ultra dense network. Telecommunication Systems. 2024;87(4):1147-65.

Belmekki BE, Alouini MS. NOMA as the next-generation multiple access in non terrestrial networks. Proceedings of the IEEE. 2024;112(9):1303-45.

Prateek K, Ojha NK, Altaf F, Maity S. Quantum secured 6G technology based applications in Internet of Everything. Telecommunication Systems. 2023;82(2):315-44.

Hassan M, Singh M, Hamid K, Saeed R, Abdelhaq M, Alsaqour R, Odeh N. Enhancing NOMA’s spectrum efficiency in a 5G network through cooperative spectrum sharing. Electronics. 2023;12(4):815.

Ma Z, Li J, Han G, Wang Y, Liu Z, Hao Z, Guo Q. Energy-and-Spectrum-Efficient Trade-Off Oriented Multi-Domains Resource Management Approach in RIS-Aided IABN Using NOMA With Imperfect SIC. IEEE Transactions on Green Communications and Networking. 2025;9(4):2028-42.

Akbarian B, Ghazi-Maghrebi S. Interference cancellation for cell-edge users in massive MIMO-NOMA systems: a contemporary overview. Telecommunication Systems. 2024;87(4):1033-44.

Xu T, Zhu J, Xu Y, Peng P, Chen X, Wu Q, Niyato D. NOMA-oriented spectrum sensing for joint HAP and HEO non-terrestrial uplink communication. IEEE Internet of Things Journal.

;12(16):34603-6.

Li X, Zhang J, Han C, Hao W, Zeng M, Zhu Z, Wang H. Reliability and security of CR-STAR-RIS-NOMA-assisted IoT networks. IEEE Internet of Things Journal. 2023;11(17):27969-80.

Jafarkhani H, Maleki H, Vaezi M. Modulation and coding for NOMA and RSMA. Proceedings of the IEEE. 2024;112(9):1179-213.

Zhang Y, Cheng N, Dai Y, Yin Z, Quan W, Zhou Y, Zhang N. Resource scheduling for eMBB and URLLC multiplexing in NOMA-based VANETs: A dual time-scale approach. IEEE Transactions on Vehicular Technology. 2023;74(3):4103-16.

Li L, Li H, Li Q, Hao S, Dai X, Ng DW. Pattern-Domain NOMA-Based Orthogonal Time Frequency Space Modulation. IEEE Transactions on Vehicular Technology. 2025;74(6):9370-9.

Rallis KG, Papanikolaou VK, Diamantoulakis PD, Tegos SA, Dowhuszko AA, Khalighi MA, Karagiannidis GK. Energy efficient cooperative communications in aggregated VLC/RF networks with NOMA. IEEE Transactions on Communications. 2023;71(9):5408-19.

Dubey S, Mehra N, Shakya DK. Time and relay shared full/half duplex cooperative NOMA with paired cell edge users. AEU-International Journal of Electronics and Communications. 2024;177:155168.

Parihar AS, Singh K, Bhatia V, Li CP, Duong TQ. Performance analysis of NOMA-enabled active RIS-aided MIMO heterogeneous IoT networks with integrated sensing and communi-

cation. IEEE Internet of Things Journal. 2024;11(17):28137-52.

Lin CY, Liao W. AoI-aware interference mitigation for task-oriented multicasting in multi cell NOMA networks. IEEE Transactions on Wireless Communication. 2024;23(9):11341-56.

Sheeba JH, Kumaravelu VB, Imoize AL. Rate maximization of cell-edge users through cooperative non-orthogonal multiple access. In2023 4th International Conference on Signal Processing and Communication (ICSPC) 2023 (pp. 361-366). IEEE.

Yuksekkaya B. Joint uplink-downlink user-cell association for ultra-dense NOMA networks. Internet of Things. 2024;27:101235.

Cai Y, Zhang Z, Huang Y, Yu W, Nie X, Liu H. Cooperative resource allocation for NOMA-MEC multi-cell network. IEEE Transactions on Vehicular Technology. 2025;74(6):9027-42.

Khan MS, Jangsher S, Qureshi HK, Hassan SA, Mumtaz S, Al-Dweik A. Edge users spectrum efficiency maximization using spatially aligned carrier aggregated NOMA in dense multi-cell networks. IEEE Transactions on Vehicular Technology. 2024;74(4):6138-52.

Liu P, An K, Lei J, Liu W, Sun Y, Zheng G, Chatzinotas S. SCMA-enabled multicell edge computing networks: Design and optimization. IEEE Transactions on Vehicular Technology. 2023;72(6):7987-8003.

Panayirci E, Koca M, Haas H, Poor HV. Spatial modulation aided physical layer security for NOMA-VLC systems. IEEE Transactions on Vehicular Technology. 2023;72(8):10286-301.

Wang J, Liu Y, Mu X, Ma X, Liu W, Xie W. Joint subchannel and power allocation in NOMA-based spatial modulation systems. IEEE Transactions on Wireless Communications. 2024;23(9):12020-37.

Alkhaldi TM, Darem AA, Alhashmi AA, Al-Hadhrami T, Osman AE. Enhancing smart city IoT communication: A two-layer NOMA-based network with caching mechanisms and optimized resource allocation. Computer Networks. 2024;255:110857.

Mienye ID, Jere N. A survey of decision trees: Concepts, algorithms, and applications. IEEE access. 2024;12:86716-27.

Aathilakshmi S, Balasubramaniam S, Sivakumar TA, Lakshmi CV. Min–Max Filtering and Exponential Fossa Optimization Algorithm–Based Parallel Convolutional Neural Network for Heart Disease Detection. International Journal of Intelligent Systems. 2025;2025:1409684.