Conceptual design of an autonomous rover with ground penetrating radar: application in characterizing soils using deep learning

被引:0
作者
Linna, P. [1 ]
Aaltonen, T. [2 ]
Halla, A. [1 ]
Gronman, J. [1 ]
Narra, N. [1 ]
机构
[1] Tampere Univ, ITC Fac, Comp Sci Unit, Pori, Finland
[2] Satakunta Univ Appl Sci, Pori, Finland
来源
2020 43RD INTERNATIONAL CONVENTION ON INFORMATION, COMMUNICATION AND ELECTRONIC TECHNOLOGY (MIPRO 2020) | 2020年
关键词
autonomous rover; ground penetrating radar; soil; deep learning; GPR DATA;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In the pursuit to make agricultural production efficient, the earliest farmers used data in the form of notes of observations. In the current age of data, it has become easier to collect data over a wide spectrum of parameters. There are numerous sensing technologies for measuring processes on and over the surface of a field, typically mounted on satellites, aerial vehicles (drones), ground vehicle and static platforms. Recently, soil has been gaining increasing attention and recognition for its significance in not only increasing productivity but also stabilizing the environment. However, characterizing soil in a field is not trivial, especially when required to access the deeper layers and quantifying the essential contents - water, nutrients and organic matter. This paper presents a short review of applications of ground penetrating radars (GPR) in measuring soil content and structure. The focus is on deep learning constructs that have been used for interpreting and establishing correlations in the characterization of soils. The review serves to inform design considerations for a planned autonomous rover that will be used for surveying field soils in the Satakunta region of Finland. After the review, a conceptual design of an autonomous GPR rover is presented.
引用
收藏
页码:1174 / 1179
页数:6
相关论文
共 38 条
  • [1] Correlation between agrotechnical properties of selected soil types and corresponding GPR response
    Akinsunmade, Akinniyi
    Tomecka-Suchon, Sylwia
    Pysz, Pawel
    [J]. ACTA GEOPHYSICA, 2019, 67 (06) : 1913 - 1919
  • [2] Delineation of Agricultural Drainage Pipe Patterns Using Ground Penetrating Radar Integrated with a Real-Time Kinematic Global Navigation Satellite System
    Allred, Barry
    Wishart, DeBonne
    Martinez, Luis
    Schomberg, Harry
    Mirsky, Steven
    Meyers, George
    Elliott, John
    Charyton, Christine
    [J]. AGRICULTURE-BASEL, 2018, 8 (11):
  • [3] Alvarez JK, 2018, C IND ELECT APPL, P611, DOI 10.1109/ICIEA.2018.8397788
  • [4] [Anonymous], 2012, 2012 7 GERM MICR C I
  • [5] Caorsi S., 2009, 2009 MED MICR S MMS, P1
  • [6] Chen XL, 2005, PROCEEDINGS OF 2005 INTERNATIONAL CONFERENCE ON MACHINE LEARNING AND CYBERNETICS, VOLS 1-9, P4690
  • [7] De-Ville S., 2018, P AGU FALL M ABSTR W
  • [8] Elsaadouny M, 2019, 2019 IEEE 10TH ANNUAL INFORMATION TECHNOLOGY, ELECTRONICS AND MOBILE COMMUNICATION CONFERENCE (IEMCON), P874, DOI [10.1109/iemcon.2019.8936250, 10.1109/IEMCON.2019.8936250]
  • [9] Nonlinear RISE-Based Control of an Autonomous Underwater Vehicle
    Fischer, Nicholas
    Hughes, Devin
    Walters, Patrick
    Schwartz, Eric M.
    Dixon, Warren E.
    [J]. IEEE TRANSACTIONS ON ROBOTICS, 2014, 30 (04) : 845 - 852
  • [10] Agricultural drainage tile surveying using an unmanned aircraft vehicle paired with Real-Time Kinematic positioning-A case study
    Freeland, Robert
    Allred, Barry
    Eash, Neal
    Martinez, Luis
    Wishart, DeBonne
    [J]. COMPUTERS AND ELECTRONICS IN AGRICULTURE, 2019, 165