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An IoT-Edge Enabled Deep-Fuzzy Hybrid Model for Real-Time Indoor Air Quality Optimization
- Chelloug, Samia Allaoua;
- Muthanna, Mohammed;
- Alshahrani, Abdullah;
- Al-Onaizan, Mohammad Hassan Ali;
- Muthanna, Ammar;
- ... Jamil, Faisal
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0초록
Indoor air quality has a significant impact on occupant health, comfort, and productivity in residential and commercial indoor environments. This paper proposes an IoT-edge enabled deep-fuzzy hybrid framework for real-time IAQ prediction and adaptive control. The proposed system integrates IoT-based environmental sensing, Temporal Fusion Transformer-based multivariate forecasting, knowledge distillation, edge-deployed Bi-LSTM inference, and Mamdani fuzzy logic control within a unified IAQ management architecture. A composite Comfort Risk Index is introduced to combine environmental parameters and occupant discomfort feedback into a single adaptive control indicator. Experimental evaluation under varying indoor conditions demonstrated strong forecasting performance, with prediction accuracies reaching 96.3% for CO2 and 95.7% for PM2.5 prediction, while reducing inference latency from 575 ms to 295 ms. Comparative analysis against baseline threshold-based control strategies further indicated improved comfort stability, smoother actuator behavior, and reduced estimated actuator operating intensity during deployment. The proposed framework also demonstrated resilient operation under simulated sensor-failure conditions while maintaining low computational overhead suitable for resource-constrained IoT-edge environments. Overall, the results indicate that combining lightweight deep learning models with interpretable fuzzy control can provide an effective, scalable, and energy-aware solution for intelligent real-time IAQ optimization in smart indoor environments.
키워드
- 제목
- An IoT-Edge Enabled Deep-Fuzzy Hybrid Model for Real-Time Indoor Air Quality Optimization
- 저자
- Chelloug, Samia Allaoua; Muthanna, Mohammed; Alshahrani, Abdullah; Al-Onaizan, Mohammad Hassan Ali; Muthanna, Ammar; Jamil, Faisal
- 발행일
- 2026-07
- 유형
- Article
- 저널명
- Sensors
- 권
- 26
- 호
- 13