- By:
- Gao, Zhiming ; Brechtl, Jamieson M; Nawaz, Kashif ; Fricke, Brian A; Gluesenkamp, Kyle R; Lavrik, Nickolay V; Boudreaux, Philip R; Li, Kai
- Page Number:
- 616-624
- Volume:
- 130
- Book Title:
- 2024 ASHRAE Winter Conference
- Publication Date:
- May 12, 2026
- Publisher Location:
- ASHRAE, United States of America
- Conference Name:
- 2024 ASHRAE Winter Conference
- Conference Location:
- Chicago, Illinois, United States of America
- Conference Sponsor:
- ASHRAE
- View DOI Listing:
- https://doi.org/10.63044/w24gao73
Abstract
Frost is a common problem in heating, ventilation, and air conditioning (HVAC) systems that can degrade their efficiencies, leading to excessive electricity consumption. Appropriate defrosting is therefore essential for heat pumps and refrigeration systems. However, these systems typically run the defrost cycle based on a predetermined time interval, a method that does not accurately identify the amount of frost and thus consume excessive electricity. To substantially improve defrosting initiation and termination, this paper describes development of a smart sensor based on a capacitive sensing technique that can quantify frost accumulation and difference between frost, ice, and water. The reported sensor adopts interdigitated comb electrodes and can be updated to a potential multifunctional sensor array for the enhancing identification of frost, ice, and water with the integrated measurement of surface temperature, frost capacitance, and resistance. The proposed frost sensor is potentially expected to have widespread applications in HVAC systems, including heat pumps, refrigerators, and commercial refrigeration systems.