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Monte Carlo Simulation Based NOMA-VLC Sensor Network With Imperfect SIC
Blekinge Institute of Technology, Faculty of Computing, Department of Computer Science.
Blekinge Institute of Technology, Faculty of Computing, Department of Computer Science.
2025 (English)Independent thesis Advanced level (degree of Master (Two Years)), 20 credits / 30 HE creditsStudent thesis
Abstract [en]

This thesis investigates the application of Non-Orthogonal Multiple Access (NOMA) in a Visible Light Communication (VLC) system designed for Sensor Nodes (SN). The study simulates a realistic indoor environment using MATLAB, with a central LED transmitter and two spatially distributed photodiode-based sensor receivers. On-Off Keying (OOK) modulation is employed for data transmission, enabling the use of simple yet effective intensity modulation and direct detection. A key objective is to evaluate the performance of NOMA under imperfect Successive Interference Cancellation (SIC), which more accurately reflects practical decoding capabilities at the receiver side. A Monte Carlo-based approach is used to explore power allocation strategies that minimize bit error rate (BER) while ensuring successful message decoding for both sensors. In addition, Forward Error Correction (FEC) is introduced to further improve system robustness, enabling reliable decoding even under residual interference from imperfect SIC.

The system’s performance is evaluated across a range of signal-to-noise ratio (SNR) levels by analyzing bit error rate (BER), achievable data rate, and the accuracy of received messages. The far user, benefiting from higher power allocation and simpler threshold-based detection, consistently achieves reliable performance, while the near user experiences more decoding errors due to residual interference from imperfect SIC. Visual outputs of channel impulse responses, superimposed signals, and decoding flows further illustrate system behavior. The simulation results confirm the feasibility of integrating NOMA into VLC-based sensor systems and offer insight into practical design trade-offs. Challenges such as decoding complexity, power allocation sensitivity, and error propagation are discussed, and future directions are proposed, including improvements in energy efficiency, decoding robustness, and potential hardware implementation.

Place, publisher, year, edition, pages
2025. , p. 57
Keywords [en]
VLC, MATLAB, NOMA, OOK modulation, FEC, Power Allocation, SN, Monte-Carlo, Imperfect SIC, BER, Data Rate.
National Category
Telecommunications
Identifiers
URN: urn:nbn:se:bth-28354OAI: oai:DiVA.org:bth-28354DiVA, id: diva2:1983713
Subject / course
ET2606 Masterarbete i elektroteknik med inriktning mot telekommunikationssystem 30,0 hp
Educational program
ETADT Plan för kvalifikation till masterexamen inom elektroteknik med inr mot telekommunikationssystem 120,0 hp
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Examiners
Available from: 2025-08-06 Created: 2025-07-12 Last updated: 2025-09-30Bibliographically approved

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