Hybrid Ventilation System and Soft-Sensors for Maintaining Indoor Air Quality and Thermal Comfort in Buildings

Author:

Vadamalraj Nivetha,Zingre Kishor,Seshadhri Subathra,Arjunan Pandarasamy,Srinivasan Seshadhri

Abstract

Maintaining both indoor air quality (IAQ) and thermal comfort in buildings along with optimized energy consumption is a challenging problem. This investigation presents a novel design for hybrid ventilation system enabled by predictive control and soft-sensors to achieve both IAQ and thermal comfort by combining predictive control with demand controlled ventilation (DCV). First, we show that the problem of maintaining IAQ, thermal comfort and optimal energy is a multi-objective optimization problem with competing objectives, and a predictive control approach is required to smartly control the system. This leads to many implementation challenges which are addressed by designing a hybrid ventilation scheme supported by predictive control and soft-sensors. The main idea of the hybrid ventilation system is to achieve thermal comfort by varying the ON/OFF times of the air conditioners to maintain the temperature within user-defined bands using a predictive control and IAQ is maintained using Healthbox 3.0, a DCV device. Furthermore, this study also designs soft-sensors by combining the Internet of Things (IoT)-based sensors with deep-learning tools. The hardware realization of the control and IoT prototype is also discussed. The proposed novel hybrid ventilation system and the soft-sensors are demonstrated in a real research laboratory, i.e., Center for Research in Automatic Control Engineering (C-RACE) located at Kalasalingam University, India. Our results show the perceived benefits of hybrid ventilation, predictive control, and soft-sensors.

Publisher

MDPI AG

Subject

Atmospheric Science,Environmental Science (miscellaneous)

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Indoor Air Quality Monitoring System with Automation: A Review;2023 IEEE 9th International Conference on Computing, Engineering and Design (ICCED);2023-11-07

2. Mechanical, natural and hybrid ventilation systems in different building types: Energy and indoor air quality analysis;Journal of Building Engineering;2023-10

3. Achieving better indoor air quality with IoT systems for future buildings: Opportunities and challenges;Science of The Total Environment;2023-10

4. Nonequilibrium sensing of volatile compounds using active and passive analyte delivery;Proceedings of the National Academy of Sciences;2023-07-26

5. A review of hybrid ventilation on humid tropics climate;IOP Conference Series: Earth and Environmental Science;2023-04-01

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