RFTemp

Author:

Banerjee Avishek1,Srinivasan Kannan1

Affiliation:

1. The Ohio State University, Computer Science and Engineering, Ohio, USA

Abstract

Microwave ovens have been widely used in recent years to heat food quickly and efficiently. Users estimate the time to heat the food by prior knowledge or by trial and error process. However, this often results in the food being over-heated or under-heated, destroying the nutrients. In this paper, we present RFTemp, a system that can monitor microwave oven leakage to estimate the temperature of the food that is being heated and thus estimate the accurate time when the food has reached the targeted temperature. To design such a system, we propose an innovative microwave leakage sensing procedure and a novel water-equivalent food model to estimate food temperature. To evaluate the real-world performance of RFTemp we build a prototype using software defined radios and conducted experiments on various food items using household microwave ovens. We show that RFTemp can estimate the temperature of the food with a mean error of 5°C, 2x improvement over contactless infrared thermometer and sensors.

Funder

NSF

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications,Hardware and Architecture,Human-Computer Interaction

Reference52 articles.

1. 2009. Americans are eating at home more; microwave usage increases but not cooking. https://www.npd.com/wps/portal/npd/us/news/press-releases/pr_091112/. 2009. Americans are eating at home more; microwave usage increases but not cooking. https://www.npd.com/wps/portal/npd/us/news/press-releases/pr_091112/.

2. 2013. The Big Thaw --- Safe Defrosting Methods. https://www.fsis.usda.gov/food-safety/safe-food-handling-and-preparation/food-safety-basics/big-thaw-safe-defrosting-methods. 2013. The Big Thaw --- Safe Defrosting Methods. https://www.fsis.usda.gov/food-safety/safe-food-handling-and-preparation/food-safety-basics/big-thaw-safe-defrosting-methods.

3. 2016. Penetration Depth. https://genuineideas.com/ArticlesIndex/wave.html. 2016. Penetration Depth. https://genuineideas.com/ArticlesIndex/wave.html.

4. 2017. Microwave Oven Radiation. https://www.fda.gov/radiation-emitting-products/resources-you-radiation-emitting-products/microwave- oven-radiation#Microwave_Oven_Safety_Standard. 2017. Microwave Oven Radiation. https://www.fda.gov/radiation-emitting-products/resources-you-radiation-emitting-products/microwave- oven-radiation#Microwave_Oven_Safety_Standard.

5. 2018. FLiR Dev Kit. https://www.sparkfun.com/products/13233/. 2018. FLiR Dev Kit. https://www.sparkfun.com/products/13233/.

Cited by 1 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. WiNE;Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies;2022-09-06

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