• Title/Summary/Keyword: Orchards Sprayer

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Order-picking Algorithm for Optimizing Operation Path of Orchard Speed Sprayer (과수원 스피드스프레이어의 작업 경로 최적화를 위한 오더 피킹 알고리즘)

  • Park, Tu-San;Hwang, Kyu-Young;Cho, Seong-In
    • Journal of Biosystems Engineering
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    • v.33 no.1
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    • pp.51-57
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    • 2008
  • The purpose of this study was to develop an optimal path planning program for autonomous speed sprayer in orchard. A digital map which contained coordinate information and entity information including height, width, radius of main stem, and disease of a trees was developed to build an optimal path. The digital map, dynamic programming and order-picking algorithm were used for planning an optimal path for autonomous speed sprayers. When this algorithm applied to rectangular-shaped orchards to travel whole trees, the developed program planned the same working path and same traveling distance as those of created by conventional method. But for irregular-shaped orchards, developed program planned differently and 5.06% shorter path than conventional method. When applied to create path for multi-selected trees, irregular-shaped orchards showed 13.9% shorter path and also rectangular-shaped orchards showed 9.1% shorter path. The developed program always planned shorter path than the path created by conventional method despite of variation of shape of orchards.

The Performance Analysis for Amounts of Sprayed Quantity by Using the Small and Medium-Sized Sprayer (중소형 살포기의 살포량 측정에 따른 성능 분석)

  • Min, Byeong Ro;Hong, Jun Taek;Lee, Dae Weon;Kim, Jea Youl
    • Journal of Animal Environmental Science
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    • v.19 no.1
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    • pp.19-24
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    • 2013
  • This study is to promote domestic environmentally appropriately conditions for the range 60~70 m, the development of the small and medium-sized sprayer ability measurement that can be used as a general-purpose paddy fields, orchards, and not consolidated areas. The sprayer designed and manufactured that can spraying effectively distance to within 60~70 m. Distribution of sprayed pesticides were obtained and analyzed by measuring the weight. Performance analysed using the buckets were placed horizontally 12.5 m, 70 m vertical intervals by $5m{\times}2.5m$, so total 68 buckets were placed. Total amounts of sprayed quantity was $2,000{\ell}$ and maximum spray distance was about 70 m. Reasonably sprayed region was 5 m~10 m vertically symmetrical. Showed a lot of spraying water in 5 m~40 m distance, and in 45~60 m tended to spraying water decreased slightly. Maximum spraying distance was 70 m.

Survey of Planting System and Pesticide Spray Method on Apple Orchards in Korea (국내 사과원의 재배형태 및 농약 살포방법 조사)

  • Kwon, Hyeyoung;Hong, Su-Myeong;Kim, Sang-Su;Paik, Min Kyoung;Lee, Hyo Sub;Kim, Dan-Bi;Moon, Byeong-Chul
    • The Korean Journal of Pesticide Science
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    • v.21 no.1
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    • pp.9-16
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    • 2017
  • A survey was conducted to research on planting system and pesticide spray methods including spray volume, sprayer types, and spray nozzles used in apple orchards. The survey was deployed to 395 farmers in 17 cities and towns including 7 regions which are major producers of apple via interview. Major apple varieties were Fuji (79.2%) and Hongro (50.9%) and high density planting system was mainly used in apple orchards (distance between rows: 4.0-4.5 m (73.1%); planting distance: 1.5-3.5 m (88.6%); canopy height: 3.0-4.5 m (88.2%)). The percentages of sprayer types were 77.6% and 22.1% for speed sprayer (airblast sprayer) and power sprayer, respectively. Spray volumes per 10a were 250-300 L in April, the month of spraying the lowest volume, and 300-400 L in June-August, the months of spraying the highest volume. Significant difference in spray volumes were not observed between conventional planting and high density planting, but regional spray volume showed significant difference. The main nozzles used by apple farmers using power sprayers were super jet nozzle (45%), super wide nozzle (26%), and 2-3 vertical head nozzle (25%). The results will helpful to establish practical agrochemicals management policy including suggestion of pesticide spray volume and evaluation of pesticide residue data and efficacy data.

Design of Roll-over Protection Structure for an Orchard Sprayer (과수용 방제기 전도 방지 구조물의 설계)

  • Kang, Tae-Gyoung;Lee, Chai-Sik;Jun, Hyeon-Jong;Choi, Duck-Kyu;Park, Suk-Ho;Kim, Hyeok-Ju;Kang, Tae-Hwan
    • Journal of Biosystems Engineering
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    • v.36 no.6
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    • pp.407-415
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    • 2011
  • Damage to agricultural production caused by insects and diseases affects farming yields. The orchard sprayer is mainly used in the country to protect the fruit in a large area, with less effort and at minimum cost. The excellent performance of the air blast spray increases the fruit protection. Chemical application in orchards has been accomplished by the orchard sprayers with air assist nozzles and a axial fan in Korea. However, the orchard sprayers without ROPS resulted in severe injury or death when operators drive the sprayers improperly on hilly orchard or farming road. This study was to develop a ROPS for the orchard sprayers improving farmer's safety. In this study, the accident case was used in analysing the design and building TOP structure of the orchard sprayer. The maximum impact, body torsion frame structures including the driver's protection are also analysed for adherence to safety regulations. The ROPS safety regulations according to the strength test results were established.

An Intelligent Spraying Machine Capable of Selective Spraying Corresponding to the Shape of Fruit Trees Using LiDAR (LiDAR를 활용한 과수 형상에 따라 선택적 방제가 가능한 지능형 방제기)

  • Yang, Changju;Kim, Gookhwan;Lee, Meonghun;Kim, Kyoung-Chul;Hong, Youngki;Kim, Hyunjong;Lee, Siyoung;Ryu, Hee-Suk;Kwon, Kyung-Do;Oh, Min-seok
    • Journal of Drive and Control
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    • v.17 no.4
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    • pp.23-30
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    • 2020
  • Driving on irregular and inclined roads using agricultural machinery such as spraying machines or trucks in orchards causes farmer casualties associated with the overturning of agricultural machinery. In addition, the harm to agricultural workers caused by the excessive inhalation of the scattered pesticide frequently occurs during pest control processes. To address these problems, we introduced precision agricultural technology that could selectively spray pesticides only where the fruit is present by recognizing the presence or shape of the fruit in the orchard. In this paper, a 16-channel LIDAR (VLP-16) made of Velodyne was used to identify the shape of fruit trees. Solenoid valves were attached to the end parts of 12 nozzles of the orchard spraying machine for on/off control. The smart spraying machine implemented in this way was mounted on a vehicle capable of autonomous travel and performed selective control depending upon the shape of the fruit trees while traveling in the orchards. This is expected to significantly reduce the amounts of pesticides used in orchards and production costs.

A study on the design and manufacture of die casting mold of belt pulley for spray pump (분무용 펌프 구동 벨트풀리의 다이캐스팅 금형설계 및 제작에 관한 연구)

  • Lee, Eun-jong;Choi, Kye-kwang;Kim, Sei-hwan
    • Design & Manufacturing
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    • v.7 no.1
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    • pp.23-27
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    • 2013
  • Orchard sprayers, wide area dusters and multipurpose control cars are flagship products of Hansung T&I Ltd. Spray pumps are one of the essential parts for these products. But conventional belt pulleys for spray pumps are heavy and expensive, and they bring down the quality as well as productivity of the end-products. Therefore, this study focuses on mold design for aluminum die casting belt pulley and mold manufacture.

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Research on the Variable Rate Spraying System Based on Canopy Volume Measurement

  • Hu, Kaiqun;Feng, Xin
    • Journal of Information Processing Systems
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    • v.15 no.5
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    • pp.1131-1140
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    • 2019
  • Characteristics of fruit tree canopies are important target information for adjusting the pesticide application rate in variable rate spraying in orchards. Therefore, the target detection of the canopy characteristics is very important. In this study, a canopy volume measurement method for peach trees was presented and a variable rate spraying system based on canopy volume measurement was developed using the ultrasonic sensing, one of the most effective target detection method. Ten ultrasonic sensors and two flow control units were mounted on the orchard air-assisted sprayer. The ultrasonic sensors were used to detect the canopy diameters and the flow controls were used to modify the flow rate of the nozzles in real time. Two treatments were established: a constant application rate of $300Lha^{-1}$ was set as the control treatment for the comparison with the variable rate application at a $0.095Lm^{-3}$ canopy. The tracer deposition at different parts of peach trees and the tracer losses to the ground (between rows and within rows) were analyzed in detail under constant rate and variable rate application. The results showed that there were no significant differences between two treatments in the liquid distribution and the capability to reach the inner parts of the crop canopies.