• Title/Summary/Keyword: 재배시설 제어

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Comparisons in Volumes of Irrigation and Drainage, Plant Growth and Fruit Yield under FDR Sensor-, Integrated Solar Radiation-, and Timer-Automated Irrigation Systems for Production of Tomato in a Coir Substrate Hydroponic System (토마토 코이어 수경재배에서 FDR센서, 적산일사량센서 및 타이머 급액방식에 따른 급배액량, 생육 및 과실수량 비교)

  • Choi, Eun-Young;Kim, Hee-Yong;Choi, Ki-Young;Lee, Yong-Beom
    • Journal of Bio-Environment Control
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    • v.25 no.1
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    • pp.63-70
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    • 2016
  • Water drainage from the open hydroponics often causes significant environmental pollution due to agrochemicals and loss of water and nutrients. The objectives of this study were to show the potential application of an irrigation schedule based on threshold values of volumetric substrate water content for tomato (Solanum lycopersicum L. 'Samsamgu') cultivation in a commercial hydroponic farm during spring to summer cultivation. This study was performed for minimizing effluent from coir substrate hydroponics using a frequency domain reflectometry (FDR) sensor-automated irrigation, as compared with an integrated solar-radiation (IR) and conventional timer-irrigation (TIMER) after transplanting. In results, no significant difference in daily irrigation volume was found among the treatments until 88 days after transplant (DAT). However, during the 88 to 107 DAT, the daily irrigation volume was in the order of IR (2125 mL) > TIMER (2063 mL) > FDR (1983 mL), and during the 108 to 120 DAT, it was in the order of IR (2000 mL) > TIMER (1664 mL) > FDR (1500 mL). The lowest drainage volume was observed in the FDR treatment with the order of IR (12~19%) > TIMER (4~12%) > FDR (0~7%) during the entire growing period. A lower irrigation volume in the FDR treatment after 88 DAT may be due to the sensor's detecting capacity for less water absorption by plant after completing fruit maturity with apical pruning and removal of lower leaves, while a higher irrigation volume in the IR treatment may be due to gradual increase in integrated solar-radiation amount as closer to summer season. There was no significant difference in plant growth and fruit yield among the treatments; however, a 11% and 18% of higher soluble sugar content was observed in the FDR than that of TIMER and IR treatment. respectively.

Development of an Automatic Water Control System for Greenhouse Soil Water Content Management (시설재배 토양의 수분 조절을 위한 자동 수분제어시스템 개발)

  • Lee, D.H.;Lee, K.S.;Chang, Y.C.
    • Journal of Biosystems Engineering
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    • v.33 no.2
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    • pp.115-123
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    • 2008
  • This study was conducted to develop an automatic soil water content control system for greenhouse, which consisted of drip irrigation nozzles, soil water content sensors, an on/off valve, a servo-motor assembly and a control program. The control logic adopted in the system was Ziegler-Nichols algorithm and rising time, time constant and over/undershoot ratio as control variables in the system was selected and determined by various control experiments to maintain small delay time and low overshoot. Based on the experimental results, it was concluded that the control system developed in the study could replace the unreliable conventional greenhouse soil water management.

Effects of Antagonistic Rhizobacteria on the Biological Control of Gray Mold in Greenhouse Grown Strawberry Plants (길항성 근원 세균이 딸기 시설재배에서 발생하는 잿빛곰팡이병의 생물학적 제어에 미치는 영향)

  • Cho, Jung-Il;Cho, Ja-Yong;Yang, Seung-Yul
    • Korean Journal of Organic Agriculture
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    • v.13 no.2
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    • pp.161-173
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    • 2005
  • This study was carried out to clarify the effects of antifungal bacterial strains isolated from the greenhouse soil grown strawberry plants on the growth inhibition of plant pathogen, gray mold (Botrytis cinerea) infected in strawberry plants in Damyang and Jangheung districts. Antagonistic bacterial strains were isolated and investigated into the antagonistic activity against gray mold. Screened ten bacterial strains which strongly inhibited Botrytis cinerea were isolated from the greenhouse grown strawberry plants, and the best antifungal microorganism designated as SB 143 was finally selected. Antifungal bacterial strain SB 143 was identified to be the genus Bacillus sp. based on the morphological and biochemical characterization. Bacillus sp. SB 143 showed 59.4% of antifungal activity against Botrytis cinerea. By the bacterialization of culture broth and heated filtrates of culture broth, Bacillus sp. SB 143 showed 93.1% and 32.1% of antagonistic activity against Botrytis cinerea.

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Performance of a Heat Pump Water Heater with the Variation of Water Flow Rate and Temperature (유량 및 온도제어에 의한 히트펌프 온수시스템의 성능 평가)

  • Yoo, Young-Sun;Kim, Young-Joong;Kang, Geum-Chun;Baek, Yi;Yoon, Jin-Ha
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 2001.11a
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    • pp.52-58
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    • 2001
  • 우리나라의 시설농업은 겨울철 난방에 소요되는 에너지원의 대부분을 수입에 의존하는 화석에너지를 이용하고 있다. 따라서 생산비중 난방비의 비중이 국제원유가의 상승에 비례하여 증가하므로서 농산물의 가격이 불안정하며, 결국에는 재배농민의 생산욕구를 저하시켜 농가소득의 감소를 초래하고 있는 실정이다. (중략)

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Design of A Sensor System to Monitoring the Growing Environment of Crops (농작물 재배환경을 모니터링 센서 시스템의 설계)

  • Xu, Chen-lin;Lee, Hyun-chang;Shin, Seong-Yoon
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.05a
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    • pp.217-218
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    • 2015
  • With the development of sensor technology and agricultural modernization, sensor application in facility agriculture is more and more widely. Wireless sensor network (WSN) will have to change the whole system of agricultural production, it has a huge role. This paper is based on the Arduino to design a system combining the temperature and humidity sensors with LCD, which to achieve monitoring growing environmental of crops.

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Effects of Production of Ever-bearing Strawberries Using Cool Air from Mushroom Cultivation House (버섯재배시설의 냉공기 이용이 사계성딸기 생산성에 미치는 영향)

  • Jeoung, Yun-Kyeoung;Park, Ju-Hyen;Ha, Tae Moon;Lee, Young-Suk;Seo, Myeong-Hoon;Kim, In-Chul
    • Journal of Bio-Environment Control
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    • v.28 no.1
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    • pp.28-37
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    • 2019
  • We designed a system that can automatically collect, convey, and control cool air of $15^{\circ}C-20^{\circ}C$ containing carbon dioxide from a mushroom cultivation house to a strawberry plastic house. We recorded the temperature at various positions from July to August 2017. The average temperature of the green house during day and at night was maintained at $33^{\circ}C$ and $26^{\circ}C$, respectively. In the moveable three-tier cylindrical bed, the average temperature around root was maintained at $26^{\circ}C$ and $21^{\circ}C$ during day and at night, respectively. On the high-bench in the green house, the temperature was maintained at $32^{\circ}C$ and $30^{\circ}C$ during day and at night, respectively. The carbon dioxide concentration was maintained around 800-1,600 ppm in the mushroom cultivation system and 400-800 ppm in the strawberry plastic house. The growth characteristics of the strawberry treated with moveable three-tier cylindrical bed were significantly different from those of the untreated high-bench bed. In addition, during the summer season, moveable three-tier cylindrical bed showed more tendency to increase in normal fruit number (NFN) and to decrease in defective fruit number (DFN) compare to the high-bench bed. Therefore, the moveable three-tier cylindrical bed showed a tendency to be more than 2 times higher yields than that of the high-bench bed. It was confirmed that ever-bearing strawberry cultivars could be cultivated in green house due to the cool air supply from the mushroom cultivation system in the summer season.

A Study for the Automatic Control System in Greenhouse Using Microcomputer(IV) -Application of a Controller for the Automatic Control System- (마이크로컴퓨터에 의한 시설재배의 자동화에 관한 연구(IV) -자동화 시스템용 종합제어기의 응용-)

  • 김진현;김철수
    • Journal of Biosystems Engineering
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    • v.20 no.3
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    • pp.288-298
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    • 1995
  • In greenhouse vegetable, the automatic control in cultivating environment has been projected as a national business ; especially a countermeasure against the settlement of UR negotiation. Because it makes possible to manage a large greenhouse with family-hands and to expect the betterment of quality and the increasement of harvest in crops. In the course of carrying the workout, however, there are many problems with the overall control system with computers as well as the individual systems for environment control because of hardware and software problems : especially the shortage of data for development of the system is most serious. Among the many problems for development of the automatic control system, the automations of irrigation, liquefied fertilizer and chemical solution, mixing and ventilation, etc and the development of the general automatic controller system for environment control in greenhouse are studied, which requires a lot of tabors. The results are summarized as follows ; 1. In moisture control by the soil moisture meter, the error was shown 10 % in the beginning irrigation point and 19 % in the stop irrigation point. 2. The supply of liquefied fertilizers with the irrigation system was excellent by setting the operating time and the mixing ratio. 3. The developed chemical spraying system was operated well, but not perfect in nozzle positions. 4. The cucumber was cultivated properly with the trickle irrigation system. 5. The developed controller for the automatic control system in greenhouse was remarkable in the part of hardware, but more researches are needed in the part of software.

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Implementation of an Automatic Control System for the Cultivation in a Greenhouse Using Fuzzy Expertized Control Algorithm (퍼지 전문가 제어 알고리즘을 이용한 시설 재배 자동 제어 시스템의 구현)

  • 노희석;김영식;김승우
    • Proceedings of the Korean Institute of Intelligent Systems Conference
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    • 2000.05a
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    • pp.59-62
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    • 2000
  • In cope with insufficient agricultural labor and requirement of high quality product Hydroponics is a really good method. It makes the high density agriculture possible and all the growing environments controllable. So its research is so much progressing to maximize the quantity and quality of farm products. Furthermore, the big progress, in the research of a future agriculture, is systematically conducted for the automatic controlled system. In this paper, a new approach to the automation of the cultivation in a green house is suggested and a practical automatic control cultivation system is implemented. To automatically control and optimize the very nonlinear and time-varying growth of farm products, a hybrid strategy(FECA; Fuzzy Expertized Control Algorithm) is proposed which serially combines a fuzzy expert system with the fuzzy logic control. The fuzzy expert system(FMES; Fuzzy Model-based Expert System) is intended to overcome the non-linearity of the growth of farm products. The part of fuzzy controller is incorporated to solve the time-variance of the growth of farm products. Finally, the efficiency and the effectiveness of the implemented agricultural automation system is presented through the cultiviation results.

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Smart Farm with Automatic Transport Car (자동운반 기능이 가능한 스마트팜)

  • Kim, Tae-Sun;Kim, Tae-Hyeong;Cheon, Dong-Gyu;Choi, Jun-Ho;Lee, Jae-Ho;Lee, Ju-Eun;Jung, Yong-Jae
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2019.07a
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    • pp.233-234
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    • 2019
  • 기존 스마트팜 기술은 수요자 중심이 아닌 대량 생산을 목적으로 시스템화 되어왔다. 이는 고령화에 따른 실질적 농촌 환경에 적용되기에는 경제적인 측면 등의 많은 문제점이 있다. 본 연구에서는 농촌 지역 인구의 고령화로 인한 적용성을 전제로 스마트팜 기술을 적용하고자 한다. 뜨거워지는 폭염으로 인해 일반적인 온실재배시설의 농작물들은 일소 피해와 시들어 말라가는 경우가 많았다. 피해를 최소화하기 위해서는 온습도 환경을 조절해주거나 차광막을 설치해주어야 한다. 하지만 현재 농촌의 작업자들 나이가 점점 증가하고 있고, 홀로 농사를 짓는 고령자가 대다수여서 많은 일을 혼자 감당하기에는 어려움이 많다. 그리고 신체가 연약한 사람들의 경우, 무거운 짐을 옮기다가 자칫 안전사고로 이어질 위험이 있다. 본 논문은 이러한 문제점들을 개선하고 예방하기 위해 기존의 스마트팜 온실 내부에 작업자를 추종하는 소형 스마트 차량을 적용한 '자동 운반 기능이 가능한 스마트팜' 기술을 제안한다. 기존의 스마트 온실 환경제어 기능을 수행하며, 고랑마다 레일을 설치하고 작업자를 추종하는 차량이 있는 스마트팜이며, 어플리케이션을 통해 직접 온실과 차량을 원격으로 수동 제어할 수 있다.

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Optimization of Growth Environment in the Enclosed Plant Production System Using Photosynthesis Efficiency Model (광합성효율 모델을 이용한 밀폐형 식물 생산시스템의 재배환경 최적화)

  • Kim Keesung;Kim Moon Ki;Nam Sang Woon
    • Journal of Bio-Environment Control
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    • v.13 no.4
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    • pp.209-216
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    • 2004
  • This study was aimed to assess the effects of microclimate factors on lettuce chlorophyll fluorescent responses and to develop an environment control system for plant growth by adopting a simple genetic algorithm. The photosynthetic responses measurements were repeated by changing one factor among six climatic factors at a time. The maximum Fv'/Fm' resulted when the ambient temperature was $21^{\circ}C,\;CO_2$ concentration range of 1,200 to 1,400 ppm, relative humidity of $68\%$, air current speed of $1.4m{\cdot}s^{-1}$, and the temperature of nutrient solution of $20^{\circ}C$. In PPF greater than $140{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$, Fv'/Fm' values were decreased. To estimate the effects of combined microclimate factors on plant growth, a photosynthesis efficiency model was developed using principle component analysis for six microclimate factors. Predicted Fv'/Fm' values showed a good agreement to measured ones with an average error of $2.5\%$. In this study, a simple genetic algorithm was applied to the photosynthesis efficiency model for optimal environmental condition for lettuce growth. Air emperature of $22^{\circ}C$, root zone temperature of $19^{\circ}C,\;CO_2$ concentration of 1,400 ppm, air current speed of $1.0m{\cdot}s^{-1}$, PPF of $430{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$, and relative humidity of $65\%$ were obtained. It is feasible to control plant environment optimally in response to microclimate changes by using photosynthesis efficiency model combined with genetic algorithm.