• Title/Summary/Keyword: Smart cultivation

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A Study on Consumers' Value Perception of Fruits and Vegetables Grown in Smart Farm (스마트팜 재배 과채류에 대한 소비자의 가치 인식에 관한 연구)

  • Kim, Seong-Hwi;Lee, Choon-Soo
    • Korean Journal of Organic Agriculture
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    • v.30 no.2
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    • pp.255-277
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    • 2022
  • This study investigated consumers' perception of fruits and vegetables grown in smart farms to stimulate the sale of agricultural products grown in smart farms. To this end, a survey was conducted on 1,050 consumers. The main results are as follows. First, 58.6% of respondents knew about smart farms, and they perceived fruits and vegetables grown in smart farms as more valuable than those grown in conventional facilities. In the detailed values, values of safety and environmental damage reduction were perceived to be of greatest value among five values. Second, as a result of investigating the importance of smart farm cultivation information in comparison with price, the most respondents emphasized both smart farm cultivation information and price information, and smart farm cultivation information was compared with price information. Cases were investigated to be more important with slight differences. Third, 41.4% of respondents had the price premium payment intention for fruit and vegetables grown in smart farms. Fourth, as a result of analyzing variables affecting the premium intention, the higher the health value among five values was recognized and the more important the smart farm cultivation information was, the higher the premium payment intention was.

Comparison of Social, Economic, and Environmental Impacts depending on Cultivation Methods - Based on Agricultural Income Survey Data and Smart Farm Survey Reports - (농산물 재배 방식에 따른 사회, 경제, 환경 영향 비교 - 농산물 소득조사 자료와 스마트팜 실태조사 보고서를 기반으로 -)

  • Lee, Jimin;Kim, Taegon
    • Journal of Korean Society of Rural Planning
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    • v.29 no.4
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    • pp.127-135
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    • 2023
  • This study examined the impact of changes in agricultural production methods on society, the economy, and the environment. While traditional open-field farming relied heavily on natural conditions, modern approaches, including greenhouse and smart farming, have emerged to mitigate the effects of climate and seasonal variations. Facility horticulture has been on the rise since the 1990s, and recently, there has been a growing interest in smart farms due to reasons such as climate change adaptation and food security. We compared open-field spinach and greenhouse spinach using agricultural income survey data, and we also compared greenhouse tomato cultivation with smart farming tomato cultivation, utilizing data from the smart farm survey reports. The economic results showed that greenhouse spinach increased yield by 25.8% but experienced a 29% decrease in income due to equipment depreciation. In the case of tomato production in smart farms, both yield and income increased by 36-39% and 34-46%, respectively. In terms of environmental impact, we also compared fertilizer and energy usage. It was found that greenhouse spinach used 29% less fertilizer but 14% more energy compared to open-field spinach. Smart farming for tomatoes saw a negligible decrease in electricity and fuel costs. Regarding the social impact, greenhouse spinach reduced labor hours by 31%, and the introduction of smart farming for tomatoes led to an average 11% reduction in labor hours. This reduction is expected to have a positive effect on sustainable farming. In conclusion, the transition from open-field to greenhouse cultivation and from greenhouse cultivation to smart farming appears to yield positive effects on the economy, environment, and society. Particularly, the reduction in labor hours is beneficial and could potentially contribute to an increase in rural populations.

Development of a smart model for Lentinula edodes cultivation based on ICT (ICT 기반 표고버섯 스마트 재배시설 모델개발)

  • Kim, In-Yeop;Kwon, Hyeong-il;Hwang, In-Ho;Lee, Won-Ho;No, Jong-Hyun;Choi, Sun-Gyu;Ko, Han-Gyu;Koo, Chang-Duk
    • Journal of Mushroom
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    • v.16 no.2
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    • pp.125-129
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    • 2018
  • In order to develop a smart cultivation facility based on ICT (Information Communication Technology), a cultivation house was selected. Sensor devices were installed to monitor any changes in the cultivation environment. A control panel was constructed to monitor and control the data on environmental changes collected by the sensors. To efficiently manage the proceedings of the cultivation environment, the cultivation process was divided into 4 stages. We designed an environmental control module using these processes. PC and mobile phone software were designed for remote monitoring and control to develop a smart cultivation system that can conveniently manage the cultivation environment and produce mushrooms in a more stable manner.

A u-Farm Cultivation Diary Management System based on Web 2.0 and Smart-Phone for Agricultural Products Cultivation Efficiency (농작물 재배 관리 효율성을 위한 Web 2.0 및 스마트폰 기반의 u-Farm 재배일지 관리 시스템)

  • Kwon, Young Wook;Jung, Se Hoon;Sim, Chun Bo
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.8 no.1
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    • pp.17-27
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    • 2012
  • Most of the current cultivation log is recorded by growers manually or whose environment information is input based on the grower's own judgement. It is not easy for growers to record the image of disease and insect pests in the cultivation log. In this regards, u-Farm cultivation log management system based on Web 2.0 and smart phone is introduced in this paper, that is used for the effective cultivation management and grower's convenience. In the system, the value of environment information is transmitted to servers via sensors. It designs and implements Web 2.0 Flex so as to make the cultivation log more reliable and provide users with active, convenient GUI in case the log is recorded by desktop. In this process, detailed modules are designed by object-oriented UML considering the reusability and maintenance of the system. Moreover, the system introduced in this paper is proved to be more excellent by the qualitative assessment compared with the other researches.

Grain cultivation traceability system using ICT for smart agriculture (스마트 농업 구현을 위한 ICT기반 곡물 재배이력관리 시스템)

  • Kim, Hoon;Kim, Oui-Woong;Lee, Hyo-Jai
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.13 no.5
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    • pp.389-396
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    • 2020
  • In this paper, a cultivation traceability system to implement smart agriculture developed and implemented, and in particular, devised a system that manages the cultivation traceability of grains that are difficult to grow in smart farms. Mobile and web programs based on smart devices are designed, and the collected information is stored in a DB server and can be used as big data. In addition, real-time location information and agricultural activity information can be matched using an electronic map(Vworld) based on GIS/LBS applying GPS of a mobile device. By designing the cultivation traceability information DB required in the field, the farmhouse, farmers, and cultivation information were developed to make it easy for managers to use, and implemented mobile and web programs in the field. The system is expected to raise the quality and safety management capabilities to the next level in response to variables such as labor saving effect and climate change.

Design of Emergency Notification Smart Farm Service Model based on Data Service for Facility Cultivation Farms Management (시설 재배 농가 관리를 위한 데이터 서비스 기반의 비상 알림 스마트팜 서비스 모델 설계)

  • Bang, Chan-woo;Lee, Byong-kwon
    • Journal of Advanced Technology Convergence
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    • v.1 no.1
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    • pp.1-6
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    • 2022
  • Since 2015, the government has been making efforts to distribute Korean smart farms. However, the supply is limited to large-scale facility vegetable farms due to the limitations of technology and current cultivation research data. In addition, the efficiency and reliability compared to the introduction cost are low due to the simple application of IT technology that does not consider the crop growth and cultivation environment. Therefore, in this paper, data analysis services was performed based on public and external data. To this end, a data-based target smart farm system was designed that is suitable for the situation of farms growing in facilities. To this end, a farm risk information notification service was developed. In addition, light environment maps were provided for proper fertilization. Finally, a disease prediction model for each cultivation crop was designed using temperature and humidity information of facility farms. Through this, it was possible to implement a smart farm data service by linking and utilizing existing smart farm sensor data. In addition, economic efficiency and data reliability can be secured for data utilization.

Tele-operating System of Field Robot for Cultivation Management - Vision based Tele-operating System of Robotic Smart Farming for Fruit Harvesting and Cultivation Management

  • Ryuh, Youngsun;Noh, Kwang Mo;Park, Joon Gul
    • Journal of Biosystems Engineering
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    • v.39 no.2
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    • pp.134-141
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    • 2014
  • Purposes: This study was to validate the Robotic Smart Work System that can provides better working conditions and high productivity in unstructured environments like bio-industry, based on a tele-operation system for fruit harvesting with low cost 3-D positioning system on the laboratory level. Methods: For the Robotic Smart Work System for fruit harvesting and cultivation management in agriculture, a vision based tele-operating system and 3-D position information are key elements. This study proposed Robotic Smart Farming, an agricultural version of Robotic Smart Work System, and validated a 3-D position information system with a low cost omni camera and a laser marker system in the lab environment in order to get a vision based tele-operating system and 3-D position information. Results: The tasks like harvesting of the fixed target and cultivation management were accomplished even if there was a short time delay (30 ms ~ 100 ms). Although automatic conveyor works requiring accurate timing and positioning yield high productivity, the tele-operation with user's intuition will be more efficient in unstructured environments which require target selection and judgment. Conclusions: This system increased work efficiency and stability by considering ancillary intelligence as well as user's experience and knowhow. In addition, senior and female workers will operate the system easily because it can reduce labor and minimized user fatigue.

Research of environmental condition using ICT-based smart cultivation system during high temperature period (ICT 기반 스마트 재배시스템을 이용한 고온기 표고재배 환경변화 조사)

  • Kim, In-Yeop;Kwon, Hyeong-il;Hwang, In-Ho;Lee, Won-Ho;No, Jong-Hyun;Choi, Sun-Gyu;Ko, Han-Gyu;Koo, Chang-Duk
    • Journal of Mushroom
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    • v.16 no.2
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    • pp.79-85
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    • 2018
  • This study was carried out to separately assess the production of post-culture, germinating, growing, and resting stages of Lentinula edodes grown in a smart cultivation facility based on ICT technology. The cultivation environment of the greenhouse facility was controlled to remain at different set points throughout a range of high ambient temperatures. Production of Sanjo-701-ho, which is a typical summer cultivar, and the new cultivar Sanjo-701-ho were tested in this ICT-based smart cultivation system. Sanjo-701-ho produced 353.7 g/bag of mushrooms from June to October, while Sanjo-701-ho produced 270.4 g/bag. These production amounts were stable over the high-temperature range of $20-35^{\circ}C$.

A Study on the Architecture Design of Smart Farm System based on IoT Technology (IoT 기반의 스마트 팜 시스템 구조설계에 관한 연구)

  • Ghil, Min-Sik;Kwak, Dong-Kurl;Choi, Shin-Hyeong;Shin, Jong-Keun
    • Proceedings of the KIPE Conference
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    • 2019.07a
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    • pp.543-545
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    • 2019
  • Recently, the demand for smart farms is increasing due to the increase in the cultivation area such as horticulture, fruit trees and special crops. However, due to the irregular weather changes and the cultivation method of the crops due to the different cultivation environment, there are frequent occurrence of diseases and insect pests and infectious diseases due to system error or carelessness, and the cycle is also very short. In addition, the Smart Farm business has been built by combining various sensors (temperature, humidity, CO2, illumination) and LED lighting, but it is costly in terms of frequent errors, lack of power supply, And thus the management can not be efficiently managed. Therefore, this paper combines real time sensing technology based on IoT Platform and high performance control technology to control pests and equipment errors and monitor the growth status of crops in real time based on big data analysis and Artificial Intelligence System.

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Design of Initial Decision-Making Support Interface for Crop Facility Cultivation (작물 시설재배 초기 의사결정 지원 인터페이스 설계)

  • Kim, Kuk-Jong;Cho, Yong-Yoon
    • Journal of Internet of Things and Convergence
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    • v.8 no.2
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    • pp.71-78
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    • 2022
  • Recently, the number of people wishing to return to farming is increasing, However, the lack of farming experience and management information of returnees is one of the main reasons for increasing the probability of agricultural failure. This study proposes an interface to support early facility cultivation management decision-making for returnees who want facility cultivation. The proposed interface is designed with UML(Unified Modeling Language) and provides key decision-making information such as land/crop suitability, land/facility costs, and management costs according to input data such as cultivation areas, selected crops, and cultivation types selected by the user. Through the proposed interface, facility cultivators can effectively and quickly acquire initial decision-making information for facility cultivation in the desired target area.