Thermal comfort
Using Deep Learning in Real-Time for Clothing Classification with Connected Thermostats." Energies 15.5 (2022) 1811.
, , , , , and . "Energy Savings in Buildings Based on Image Depth Sensors for Human Activity Recognition." Energies 16.3 (2023) 1078.
, , , , , and . "Lecture Notes in Computer Science: Smart Multimedia A Real-Time Adaptive Thermal Comfort Model for Sustainable Energy in Interactive Smart Homes: Part I. Ed. and . Vol. 13497. Cham: Springer International Publishing, 2022.
, , , , , and . Developing occupant archetypes within urban low-income housing: A case study in Mumbai, India." Building Simulation 15.9 (2022) 1661–1683.
, , , and . "Investigating the influence of environmental information on perceived indoor environmental quality: An exploratory study." Journal of Building Engineering 48 (2022).
, , , and . "Sustainable framework for buildings in cold regions of China considering life cycle cost and environmental impact as well as thermal comfort." Energy Reports 6 (2020) 3036–3050.
, , , , and . "Coupling CFD and building energy modelling to optimize the operation of a large open office space for occupant comfort." Sustainable Cities and Society 60 (2020) 102257.
, , , , , and . "Performance assessment of low-cost environmental monitors and single sensors under variable indoor air quality and thermal conditions." Building and Environment 187.January 2021 (2021).
, , , , , and . "Occupant thermal feedback for improved efficiency in university buildings." Energy and Buildings 144 (2017) 241–250.
, , , , and . " , , and . "
Pagination
- Page 1
- Next page