• Title/Summary/Keyword: Greenhouse : Monitoring system

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Identification of Crop Growth Stage by Image Processing for Greenhouse Automation (영상정보를 이용한 자동화 온실에서의 작물 성장 상태 파악에 관한 연구)

  • 김기영;류관희;전성필
    • Journal of Biosystems Engineering
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    • v.24 no.1
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    • pp.25-30
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    • 1999
  • The effectiveness of many greenhouse environment control methodologies depends on the growth information of crops. Acquisition of the growth information of crops requires a non-invasive and continuous monitoring method. Crop growth monitoring system using digital imaging technique was developed to conduct non-destructive and intact plant growth analyses. The monitoring system automatically measures crop growth information sends an appropriate control signal to the nutrient solution supplying system. To develop the monitoring system, a linear model that explains the relationship between the fresh weight and the top projected leaf area of a lettuce plant was developed from an experiment. The monitoring system was evaluated buy successive lettuce growing experiments. Results of the experiments showed that the developed system could estimate the fresh weight of lettuce from a lettuce image by using the linear model and generate an EC control signal according to the lettuce growth stage.

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Real-Time Remote Greenhouse Monitoring and Control Using LabView (LabView를 이용한 실시간 온실 모니터링 및 원격 제어)

  • 서정희;박흥복
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.7 no.4
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    • pp.779-787
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    • 2003
  • Recently, a study on the development of remote monitoring and automation control system based on Web is spread widely. In this paper, we have expended the remote control method on the existing automation. And we proposed method to do real-time monitoring and remote control considering multimedia data processing, the expansion of TCP/IP using LabView graphical language. Also we applied the method in greenhouse environment control system. The application result was evaluated by very efficient thing to remotely monitor and control situation of greenhouse.

Real-Time Transmission System for Greenhouse Information Using MQTT and RTSP (MQTT와 RTSP를 통한 온실 정보의 실시간 전송 시스템)

  • Kim, Dong-Eon;Kim, Seong-Woo;Kwon, Soon-Kak
    • Journal of Korea Multimedia Society
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    • v.18 no.8
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    • pp.935-942
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    • 2015
  • According to growing of the plant cultivation in a greenhouse environment, the demand of a system to control the greenhouse easier has increased. Currently, the methods to control by the mobile App represent the information in a greenhouse environment with a simple numerical data or compose only the contents with a limited degree of freedom. In order to solve these problems, this paper presents a system that can be viewed or controlled greenhouse conditions in near / remote distance using augmented reality and MQTT communication protocol, RTSP media streaming protocol. The proposed method is implemented in Android smartphone environment and acts monitoring the information (temperature, humidity, illuminance) obtained by greenhouse's sensors and transmits the real time greenhouse's video using RTSP in the remote distance, and controls the values of temperature, humidity, illuminance for the greenhouse using the augmented reality in the near distance.

Effect of Irrigation Automation Using Stem Diameter Variation as an Indicator of Irrigation Timing in Greenhouse Tomato (온실재배 토마토에서 관개시기 진단지표로 경직경 변화를 이용한 관개 자동화 효과)

  • 이변우;신재훈
    • Journal of Bio-Environment Control
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    • v.8 no.4
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    • pp.232-241
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    • 1999
  • The automatic irrigation system using the stem diameter monitoring and the transpiration model for the determination, respectively, of irrigation timing and amount was designed and evaluated for its applicability in pot and field culture of greenhouse tomato. In the pot culture condition, the yield and quality of greenhouse tomato were improved when irrigation was practiced based on the stem diameter monitoring and the transpiration model as compared to the irrigation practice based on soil moisture monitoring. However, the effects were not significant in the field culture condition.

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Conceptual Design of a Portal System for International Shipping's Greenhouse Gas Monitoring, Reporting, and Verification (MRV 규제 대응을 위한 국제해운 에너지 효율 포탈 시스템 개념 설계)

  • Kang, Nam-seon;Lee, Beom-seok;Kim, Sang-yong;Lee, Jung-jin;Yoon, Hyeon-kyu
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.22 no.1
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    • pp.108-117
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    • 2016
  • In this paper, a portal system compatible with MRV regulation was designed to monitoring, reporting and verifying $CO_2$ emission and fuel consumption data from an international ship. A portal system supports monitoring and reporting task of international shipping companies and calculates national greenhouse gas inventory. EU MRV law, MRV discussions of IMO, responses of international shipping companies to ship energy efficiency and greenhouse gas regulation, and greenhouse gas statistics on international shipping were analyzed to drive portal system requirements. For ship energy efficiency and $CO_2$ emitted monitoring, a data collection module was designed based on on-board equipment, energy efficiency measuring device and navigation report. Data transfer module with easy management and minimized usage to transfer ship data to shore was designed. A portal system was designed to convert the collected data into the standard reporting format, perform monitoring, statical analysis, verification and auto report generation, and support national greenhouse gas inventory.

Implementation of Ubiquitous Greenhouse Management System Using Sensor Network (센서 네트워크를 활용한 유비쿼터스 온실관리시스템 구현)

  • Seo, Jong-Seong;Kang, Min-Su;Kim, Young-Gon;Sim, Chun-Bo;Joo, Su-Chong;Shin, Chang-Sun
    • Journal of Internet Computing and Services
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    • v.9 no.3
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    • pp.129-139
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    • 2008
  • This paper proposes a Ubiquitous Greenhouse Management System (UGMS) based on USN(Ubiquitous Sensor Network) which can be real-time monitoring and controlling of greenhouse's facilities by collecting environment and soil information with environment and soil sensors, and CCTV camera. The existing systems were controlled simply by temperature. Also, it was possible to monitor only at control room in a greenhouse. For solving problems of the exiting system, our system can remotely monitor and control greenhouse by considering environment information. The detail components are as follows. The system includes the sensor manager and the CCTV manager to gather and manage greenhouse information with soil and the environment sensors, and camera. Also the system has the greenhouse database storing greenhouse information and the greenhouse server transmitting greenhouse information to the GUI and controlling greenhouse. Finally, the GUI showing greenhouse condition to users exists in our system. To verify the executability of the UGMS, after developing the greenhouse model, we confirmed that our system could monitor and control the greenhouse condition at remote GUI by applying the UGMS's components to the model.

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A study on the UI design and program development for integrated management of carbon data in city (도시 탄소데이터 통합관리를 위한 프로그램 설계 방안 및 UI 연구)

  • Park, Jun-Hyoung;Kim, Seong-Sik;Kim, Jong-Woo;Choi, Guei-Tai
    • Journal of the Korean Solar Energy Society
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    • v.33 no.2
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    • pp.108-117
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    • 2013
  • Studies on the regulation and measurement of greenhouse gases(GHGs) emissions have been carrying out for global wanning. In order to reduce greenhouse gas emissions, many countries have been promoting the Emissions Trading System and projects of the Joint Implementation(JI) and Clean Development Mechanism(CDM). These country's GHG emissions have been measured calculation criteria based on the Intergovernmental Panel on Climate Change(IPCC) Guidelines. In order to respond to GHGs regulation, in each country, it is planing to build a Low-Carbon City. The system has been developed for calculating GHGs emissions from companies and institutions in their respective countries. However, the system can monitor the GHGs per city, has not been developed. In this paper, it is studied to design the User Interface and to develop integrated monitoring program for Low-carbon city. This program will make possible monitoring and management, statistics, and reports written by using each data in units of cities.

A Study on System for Environmental Control in the Greenhouse using Internet (인터넷 기반의 온실 환경 제어 시스템에 관한 연구)

  • Kim, Dae-Eop;Park, Heung-Bok
    • The KIPS Transactions:PartD
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    • v.8D no.4
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    • pp.427-438
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    • 2001
  • Recently, Environmental Control Devices of Green House for Protected Cultivation is composed of on/off-type Controller to control each device using timer in equipment of intensive Labor. In case of system, it is difficult to grasp condition of the greenhouse about errors when this system has defect of a hardware, and it operates in the remote place or at night. In this paper, we developed a system that capable of replacing the existing control method of on/off with display panel in the greenhouse, monitoring data aquisition and status in the greenhouse using client computer based on internet. Also this system can communicate with each local greenhouse, and send alarm message about error. And we constructed web server to manage efficient informations for environmental control and corps cultivation in the greenhouse.

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Development of a Greenhouse Gas Monitoring System for Construction Projects (건설사업의 온실가스 모니터링 시스템 개발)

  • Kim, Tae Yeong;Park, Hee-Sung
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.34 no.5
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    • pp.1589-1597
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    • 2014
  • For several decades, economic growth has achieved in the aspect of productivity and effectiveness not environmental friendly. As a result, global warming is a major agenda to solve. Therefore, global effort to sustainable development has been adopted like UNFCCC and Kyoto protocol that aimed to reduce greenhouse gas. However, the construction industry has only focused on applying techniques for using less energy sources not monitoring sustainable construction and development. Therefore, this study developed a tool for monitoring greenhouse gas emissions in construction industry. The proposed system evaluates and estimates BAU (Business as usual) for each phase of a construction project. For this purpose, analyzed the greenhouse gas emission factors coincide to life cycle of a construction project. The scope of monitoring is determined according to data availability and emission factor. Then, the system framework is developed and the calculation logic is proposed the system features provide comparison between the emission estimates for eco-friendly design and the actual emission of construction and operation phases. The system would be utilized as a tool for supporting to green construction realization and green construction performance evaluation.

Effects of the Brackish Water Desalination System on Soil Environment and Growth in Squash Greenhouse Cultivation Area (시설재배지에서 기수담수화시스템 적용에 따른 토양 환경 및 애호박의 생육 영향 분석)

  • Kim, Soo-Jin;Bae, Seung-jong;Jeong, Han-Suk;Kim, Hak-Kwan;Park, Seung-Woo
    • Journal of The Korean Society of Agricultural Engineers
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    • v.60 no.3
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    • pp.113-121
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    • 2018
  • The objectives of the research were 1) to develop the low-cost and high efficient desalination system to treat brackish water having high salt contents for irrigation at greenhouses near coast, and 2) to monitor and assess the effects of the brackish water desalination system on soil environment and growth in squash greenhouse cultivation area. The monitoring site was one of the squash greenhouse cultivation farm at Choengam-ri, Jinsang-myun, Gwangyang-si, Jeonnam-Do Monitoring results for groundwater irrigation water quality, and salinity showed a remarkable difference between control and treatment group. The salinity of soil at treatment group was less than at control group. While, the system made possible to increase the squash quantity from 4.7 ea to 6.3 ea at each and the average weight of the harvested squash was increased from 277.2 g to 295.1 g. The applied brackish water desalination system may be appled to reclaim sea or brackish irrigated area as alternative water resources, although long-term monitoring is needed to get more representative results at different level of salinity.