실내공기질 개선 시스템의 서버 구성 방식에 따른 응답 시간의 차이 비교

Comparison of the Difference in Response Time According to the Server Configuration Type of the Indoor Air Quality Improvement System

  • 국중진 (상명대학교 정보보안공학과)
  • Joongjin Kook (Dept. of Information Security Engineering, Sangmyung University)
  • 투고 : 2023.03.02
  • 심사 : 2023.03.20
  • 발행 : 2023.03.31

초록

Various devices have been emerging as a means of measuring indoor air quality, and among them, there are devices that support real-time remote monitoring through IoT technology and a cloud environment. To improve indoor air quality, based on the results determined by measuring devices, air purifiers or ventilation systems may need to be operated, and temperature and humidity control may be required. In this paper, we propose a design of indoor air quality measuring devices required for indoor air quality evaluation, and of the system needed to control relevant devices to improve indoor air quality through the interaction with the measuring devices. Currently, the servers for the interaction of indoor air quality devices and IoT devices are divided into conventional server type and serverless type, comparing the differences in response time of IoT devices to changes of indoor air quality.

키워드

과제정보

본 결과물은 환경부 및 한국환경산업기술원의 2023년도 녹색융합 전문인력양성 지원사업을 통해 수행된 연구임.

참고문헌

  1. The 4th Basic Plan for Indoor Air Quality Management, Ministry of Environment. Republic of Korea. (2020)
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  3. Divya L, Debopam A, SmartVent: A Context Aware IoT System to Measure Indoor Air Quality and Ventilation Rate, 17th IEEE International Conference on Mobile Data Management (MDM), 2016, pp. 64-69, doi: 10.1109/MDM.2016.91.
  4. Tae Han Kim, Ji Eun Oh, Mi Ju Kim, Study on Particulate Pollutant Reduction Characteristics of Vegetation Biofilters in Underground Subway Stations, Journal of the Semiconductor & Display Technology, vol.21, no.4, pp.99-105, 2022.
  5. Air quality index, https://en.wikipedia.org/wiki/Air_quality_index