• Title/Summary/Keyword: 온도 시각화

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Web based Fault Tolerance 3D Visualization of IoT Sensor Information (웹 기반 IoT 센서 수집 정보의 결함 허용 3D 시각화)

  • Min, Kyoung-Ju;Jin, Byeong-Chan
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.26 no.1
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    • pp.146-152
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    • 2022
  • Information collected from temperature, humidity, inclination, and pressure sensors using Raspberry Pi or Arduino is used in automatic constant temperature and constant humidity systems. In addition, by using it in the agricultural and livestock industry to remotely control the system with only a smartphone, workers in the agricultural and livestock industry can use it conveniently. In general, temperature and humidity are expressed in a line graph, etc., and the change is monitored in real time. The technology to visually express the temperature has recently been used intuitively by using an infrared device to test the fever of Corona 19. In this paper, the information collected from the Raspberry Pi and the DHT11 sensor is used to predict the temperature change in space through intuitive visualization and to make a immediate response. To this end, an algorithm was created to effectively visualize temperature and humidity, and data representation is possible even if some sensors are defective.

HTML5 based-Visualization Component Building Regression Analysis Chart from Distributed IoT Sensors (HTML5를 활용한 IoT 센서 데이터의 회귀분석 차트)

  • Park, Moo-Young;Kim, Sung-Ki
    • Proceedings of the Korea Information Processing Society Conference
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    • 2015.10a
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    • pp.1800-1803
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    • 2015
  • 기존의 센서가 컴퓨팅과 통신기능을 갖추게 되면서, 분산된 센서가 통신망을 통해 전달하는 현장의 물리량 변화를 직관적으로 판단할 수 있게 돕는 재사용 가능한 데이터 시각화 컴포넌트의 수요가 높다. 본 연구에서는 라즈베리파이를 IoT센서로 보고, 분산된 복수의 IoT센서들로부터 현장의 온도 값을 웹 서버에서 모아, 사용자가 클라이언트 단말을 통해 현장의 온도변화 상황을 직관성 있게 판단할 수 있도록 돕는 회귀분석 시각화컴포넌트를 개발하였다. 본 연구에서는 이종분산의 IoT 환경에서 다양한 브라우저를 지원할 수 있도록 Non-ActiveX 기반 데이터 시각화 컴포넌트 개발을 논한다. 본 연구의 결과는 단일의 온도센서가 보고하는 온도값을 현장의 온도값이라고 대표할 수 없는 항온항습 시설의 온도 감시제어 응용에서 본 연구 결과가 널리 활용될 것으로 본다.

Spatial Distribution of Extremely Low Sea-Surface Temperature in the Global Ocean and Analysis of Data Visualization in Earth Science Textbooks (전구 대양의 극저 해수면온도 공간 분포와 지구과학교과서 데이터 시각화 분석)

  • Park, Kyung-Ae;Son, Yu-Mi
    • Journal of the Korean earth science society
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    • v.41 no.6
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    • pp.599-616
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    • 2020
  • Sea-surface temperature (SST) is one of the most important oceanic variables for understanding air-sea interactions, heat flux variations, and oceanic circulation in the global ocean. Extremely low SSTs from 0℃ down to -2℃ should be more important than other normal temperatures because of their notable roles in inducing and regulating global climate and environmental changes. To understand the temporal and spatial variability of such extremely low SSTs in the global ocean, the long-term SST climatology was calculated using the daily SST database of satellites observed for the period from 1982 to 2018. In addition, the locations of regions with extremely low surface temperatures of less than 0℃ and monthly variations of isothermal lines of 0℃ were investigated using World Ocean Atlas (WOA) climatology based on in-situ oceanic measurements. As a result, extremely low temperatures occupied considerable areas in polar regions such as the Arctic Ocean and Antarctic Ocean, and marginal seas at high latitudes. Six earth science textbooks were analyzed to investigate how these extremely low temperatures were visualized. In most textbooks, illustrations of SSTs began not from extremely low temperatures below 0℃ but from a relatively high temperature of 0℃ or higher, which prevented students from understanding of concepts and roles of the low SSTs. As data visualization is one of the key elements of data literacy, illustrations of the textbooks should be improved to ensure that SST data are adequately visualized in the textbooks. This study emphasized that oceanic literacy and data literacy could be cultivated and strengthened simultaneously through visualizations of oceanic big data by using satellite SST data and oceanic in-situ measurements.

Temperature Data Visualization for Condition Monitoring based on Wireless Sensor Network (무선 센서 네트워크 기반의 상태 모니터링을 위한 온도 데이터 시각화)

  • Seo, Jung-Hee
    • The Journal of the Korea institute of electronic communication sciences
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    • v.15 no.2
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    • pp.245-252
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    • 2020
  • Unexpected equipment defects can cause a huge economic losses in the society at large. Although condition monitoring can provide solutions, the signal processing algorithms must be developed to predict mechanical failures using data acquired from various sensors attached to the equipment. The signal processing algorithms used in a condition monitoring requires high computing efficiency and resolution. To improve condition monitoring on a wireless sensor network(WSN), data visualization can maximize the expressions of the data characteristics. Thus, this paper proposes the extraction of visual feature from temperature data over time using condition monitoring based on a WSN to identify environmental conditions of equipment in a large-scale infrastructure. Our results show that time-frequency analysis can visually track temperature changes over time and extract the characteristics of temperature data changes.

The Visualization of Damage Spreading Method Using JAVA Applet (자바에플렛을 이용한 손상확산방법의 시각화)

  • Kwak, Wooseop
    • Journal of Integrative Natural Science
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    • v.1 no.1
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    • pp.36-40
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    • 2008
  • 본 논문은 자바 에플릿(Java applet)을 이용하여 보존모형과 비보존모형의 온도에 따른 손상확산(damage spreading)의 특성을 분석하였다. 보존모형인 아이징(Ising)모형과 비보존 모형인 격자기체(lattice gas) 및 Driven Diffusive System(DDS)을 다양한 전이확률(transition probability)을 사용하여 온도에 따라 물질내부에서 손상확산이 어떻게 발전하는지를 자바 에플릿 프로그램을 이용하여 시각화하여 손상확산을 명확히 이해하고자 하였다.

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Magnetic Resonance Current Density Imaging

  • 오석훈;이원희;이항로;한재용;우응제;조민형;이수열
    • Proceedings of the KSMRM Conference
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    • 2002.11a
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    • pp.99-99
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    • 2002
  • 목적: 인체에 전류를 주입하면 체내의 생체조직의 임피던스 분포에 따라서 전류밀도 분포가 결정된다. 이러한 전류밀도 분포에 대한 정보는 전기임피던스 단층촬영법과 유방암 진단, 체내 온도 분포의 영상화, 전기자극에 의한 체내 전류 경로의 시각화에 대한 연구에 응용될 수 있다. 한편 이러한 전류밀도 분포는 전류주입 자기공명영상기법에 의해 영상화할 수 있으며, 본 논문은 3차원 팬텀 내부의 전류밀도 분포를 영상화하는 전류주입 자기공명영상기법의 실험결과를 기술한다.

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Implementation of an Improved Time Synchronization in Wireless Sensor Networks (무선 센서 네트워크에서의 개선된 시각 동기화 구현)

  • Bang, Sangwon;Sohn, Surgwon
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2013.07a
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    • pp.69-72
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    • 2013
  • 본 논문은 TPSN 알고리즘의 시각 동기화 오차를 개선하기 위하여 Imote2 센서 노드의 클럭 드리프트 특성을 적용하는 개선된 TPSN 알고리즘을 제안한다. 클럭 드리프트의 원인은 주로 수정발진기에 기인한다. 본 연구에서는 온도 및 습도 등 환경 조건이 비슷할 경우에 드리프트가 크게 차이나지 않는다는 실험 결과에 따라 드리프트의 평균값을 구하고 이를 TPSN 동기화 오차 보정에 사용한다. 이때 적용되는 드리프트 특성 값은 센서 노드 설치 이전에 미리 측정하여야 한다. 실험을 통하여 본 논문에서 제안한 개선된 TPSN 알고리즘이 동기화 오차 개선에 효과적임을 확인하였다.

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Partition-based Big Data Analysis and Visualization Algorithm (빅데이터 분석을 위한 파티션 기반 시각화 알고리즘)

  • Hong, Jun-Ki
    • The Journal of Bigdata
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    • v.5 no.1
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    • pp.147-154
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    • 2020
  • Today, research is actively being conducted to derive meaningful results from big data. In this paper, we propose a partition-based big data analysis algorithm that can analyze the correlation between variables by setting the data areas of big data as partitions and calculating the representative values of each partition. In this paper, the analyzed visualization results are compared according to the partition size of a proposed partition-based big data analysis (PBDA) algorithm that can control the size of the partition. In order to verify the proposed PBDA algorithm, the big data of 'A' is analyzed, and meaningful results are obtained through the analysis of changes in sales volume of products according to changes in temperature and sales price.

Real-time Monitoring of Temperature and Relative Humidity and Visualization of Pest Survey Data for Integrated Pest Management in Collection Storage Area (유물 공간의 종합적 유해생물 관리(Integrated Pest Management)를 위한 실시간(Real-Time) 온습도 모니터링 및 유해 생물 조사 자료의 시각화)

  • Im, Ik-Gyun;Lim, Seong-Duk;Han, Gyu-Seong
    • Journal of Conservation Science
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    • v.37 no.5
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    • pp.440-450
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    • 2021
  • Temperature and humidity data collection using real-time sensors and data loggers was conducted for integrated pest management in the collection storage and exhibition space of the Jeongnimsaji Museum, Buyeo. The real-time temperature and humidity monitoring system collected measurement data every 30 minutes and enabled real-time confirmation of the data through a linked application. If the temperature and humidity data measured in the real-time temperature and humidity monitoring system exceeds the set range, a push notification was sent to the mobile phone of the person in charge to provide status information to establish a continuous management system. Through this, it was possible to immediately recognize and take action when the temperature range exceeded the recommended relic temperature in August. We performed data visualization on the concentration of airborne fungus in the storage area and the inflow path and density of insects. Based on the recommended criteria presented by the National Institute of Cultural Heritage, The data on the spatial and temporal concentration of airborne fungus inside the collection storage were found to be maintained at a value below the standard recommended by the National Institute of Cultural Heritage (80 CFU/m3). Also, as a result of the insect inflow survey, no insects were captured inside the storage area, and in the case of the exhibition space, insects such as Scutigera coleoptrata, Loxoblemmus arietulus, Diestrammena asynamora, Koreoniscus racovitzai were captured. Based on this, as a result of visualization according to the individual density of captured insects by area, it was confirmed that the main inflow paths of insects were the external entrance and the toilet area.

Time Synchronization over SpaceWire Network using Hop Count Information (홉 카운트 정보를 이용한 스페이스와이어 네트워크 시각동기화 방안)

  • Ryu, Sang-Moon
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2016.10a
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    • pp.715-718
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    • 2016
  • SpaceWire invented for on-board data handling in a spacecraft has Time-Code defined for time synchronization over SpaceWire network. Delay and jitter of the transmission of Time-Code caused when a Time-Code travels through a network are the main reasons of time synchronization error. This work proposes a scheme that can reduce the time synchronization error by using extended Time-Codes. The proposed scheme can remove both transmission jitter and transmission delay. The scheme will be validated in a simulation environment built with OMNeT++.

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