Challenges of sustainable agricultural development with special regard to Internet of Things: Survey

Author:

Neményi Miklós1,Kovács Attila J.1,Oláh Judit2,Popp József3,Erdei Edina2,Harsányi Endre4,Ambrus Bálint1,Teschner Gergely1,Nyéki Anikó1ORCID

Affiliation:

1. Department of Biosystems Engineering and Precision Technology, Széchenyi István University, 2 Vár square, 9200Mosonmagyaróvár, Hungary

2. Faculty of Economics and Business, University of Debrecen, 138 Böszörményi St., 4032Debrecen, Hungary

3. John von Neumann University, Hungarian National Bank – Research Center, 10 Izsáki St., 6000Kecskemét, Hungary

4. Institute of Land Use, Engineering and Precision Farming Technology, University of Debrecen, 138 Böszörményi St., 4032Debrecen, Hungary

Abstract

AbstractIf we want to increase the efficiency of precision technologies to create sustainable agriculture, we need to put developments and their application on a new footing; moreover, a general paradigm shift is needed. There is a need to rethink close-at-hand and far-off innovation concepts to further develop precision agriculture, from both an agricultural, landscape, and natural ecosystem sustainability perspective. With this, unnecessary or misdirected developments and innovation chains can be largely avoided. The efficiency of the agrotechnology and the accuracy of yield prediction can be ensured by continuously re-planning during the growing season according to changing conditions (e.g., meteorological) and growing dataset. The aim of the paper is to develop a comprehensive, thought-provoking picture of the potential application of new technologies that can be used in agriculture, primarily in precision technology-based arable field crop production, which emphasizes the importance of continuous analysis and optimisation between the production unit and its environment. It should also be noted that the new system contributes to reconciling agricultural productivity and environmental integrity. The study also presents research results that in many respects bring fundamental changes in technical and technological development in field production. The authors believe that treating the subsystems of agriculture, landscape, and natural ecosystem (ALNE) as an integrated unit will create a new academic interdisciplinarity. ICT, emphasizing WSN (Wireless Sensor Network), remote sensing, cloud computing, AI (Artificial Intelligence), economics, sociology, ethics, and the cooperation with young students in education can play a significant role in research. This study treats these disciplines according to sustainability criteria. The goal is to help management fulfil the most important expectation of reducing the vulnerability of the natural ecosystem. The authors believe that this article may be one of the starting points for a new interdisciplinarity, ALNE.

Funder

Széchenyi István Egyetem

Publisher

Akademiai Kiado Zrt.

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering,Environmental Engineering

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