The Demeter system for automated harvesting

被引:6
|
作者
Pilarski T. [1 ]
Happold M. [1 ]
Pangels H. [1 ]
Ollis M. [1 ]
Fitzpatrick K. [1 ]
Stentz A. [1 ]
机构
[1] Robotics Institute, Carnegie Mellon University, Pittsburgh
基金
美国国家航空航天局;
关键词
Agriculture; Automation; GPS; Image segmentation; Mobile robots; Vision guidance;
D O I
10.1023/A:1015622020131
中图分类号
学科分类号
摘要
Automation of agricultural harvesting equipment in the near term appears both economically viable and technically feasible. This paper describes the Demeter system for automated harvesting. Demeter is a computer-controlled speedrowing machine, equipped with a pair of video cameras and a global positioning sensor for navigation. Demeter is capable of planning harvesting operations for an entire field, and then executing its plan by cutting crop rows, turning to cut successive rows, repositioning itself in the field, and detecting unexpected obstacles. In August of 1997, the Demeter system autonomously harvested 40 hectares (100 acres) of crop in a continuous run (excluding stops for refueling). During 1998, the Demeter system harvested in excess of 48.5 hectares (120 acres) of crop, cutting in a variety of fields.
引用
收藏
页码:9 / 20
页数:11
相关论文
共 50 条
  • [21] Automated Seed Quality Testing System Using GAN and Active Learning
    Nagar, Sandeep
    Pani, Prateek
    Nair, Raj
    Varma, Girish
    PATTERN RECOGNITION AND MACHINE INTELLIGENCE, PREMI 2021, 2024, 13102 : 509 - 519
  • [22] Conceptualizing a Sustainable Food System in an Automated World: Toward a "Eudaimonian" Future
    Shepon, Alon
    Henriksson, Patrik John Gustav
    Wu, Tong
    FRONTIERS IN NUTRITION, 2018, 5
  • [23] Demeter: A Rice Panicle Grain Loss Detection Software
    Giordano, Douglas Montanha
    da Silva, Joao Pablo S.
    Ecar, Miguel
    PROCEEDINGS OF THE 20TH BRAZILIAN SYMPOSIUM ON INFORMATIONS SYSTEMS, SBSI 2024, 2024,
  • [24] Monitoring system in plant factories for automated mass data labeling of diseased plant
    Hatsugai, Emiko
    Morohashi, Haruo
    Fujimoto, Yoshifumi
    Kumauchi, Masahito
    Murai, Kunihiro
    Shimizu, Ikuko
    INTERNATIONAL WORKSHOP ON ADVANCED IMAGING TECHNOLOGY, IWAIT 2024, 2024, 13164
  • [25] An Automated Forming System of Negative Plates
    Zhang, Jialiang
    Yang, Jianguo
    Li, Peng
    Zhou, Hu
    MATERIAL SCIENCE, CIVIL ENGINEERING AND ARCHITECTURE SCIENCE, MECHANICAL ENGINEERING AND MANUFACTURING TECHNOLOGY II, 2014, 651-653 : 1009 - 1012
  • [26] Development of automated system for insole manufacturing
    Udiljak, T.
    Mihoci, K.
    Obrovac, K.
    Annals of DAAAM for 2005 & Proceedings of the 16th International DAAAM Symposium: INTELLIGENT MANUFACTURING & AUTOMATION: FOCUS ON YOUNG RESEARCHES AND SCIENTISTS, 2005, : 367 - 368
  • [27] IMPLEMENTATION AND EVALUATION OF AN AUTOMATED DISPENSING SYSTEM
    SCHWARZ, HO
    BRODOWY, BA
    AMERICAN JOURNAL OF HEALTH-SYSTEM PHARMACY, 1995, 52 (08) : 823 - 828
  • [28] An automated system for product specification and design
    Wei, CC
    Liu, PH
    Chen, CB
    ASSEMBLY AUTOMATION, 2000, 20 (03) : 225 - 232
  • [29] Vision of an 'automated' hospital information system
    Balkányi, L
    Lakner, G
    MEDINFO '98 - 9TH WORLD CONGRESS ON MEDICAL INFORMATICS, PTS 1 AND 2, 1998, 52 : 945 - 948
  • [30] AN AUTOMATED HYDROPONICS SYSTEM USED IN A GREENHOUSE
    Yildirim, Murat
    Dardeniz, Alper
    Kaya, Seckin
    Ali, Baboo
    SCIENTIFIC PAPERS-SERIES E-LAND RECLAMATION EARTH OBSERVATION & SURVEYING ENVIRONMENTAL ENGINEERING, 2016, 5 : 63 - 66