农业可持续发展的挑战,特别是物联网:调查

Q3 Agricultural and Biological Sciences
M. Neményi, A. Kovács, J. Oláh, J. Popp, Edina-Timea Erdei, E. Harsanyi, Bálint Ambrus, G. Teschner, A. Nyéki
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引用次数: 2

摘要

如果我们想提高精密技术的效率,创造可持续农业,我们就需要把发展及其应用放在一个新的基础上;此外,还需要进行一次普遍的范式转变。有必要从农业、景观和自然生态系统可持续性的角度重新思考近距离和遥远的创新概念,以进一步发展精准农业。这样,就可以在很大程度上避免不必要或误导的发展和创新链。农业技术的效率和产量预测的准确性可以通过在生长季节根据不断变化的条件(如气象)和生长数据集不断重新规划来确保。本文的目的是全面、发人深省地介绍可用于农业的新技术的潜在应用,主要是在基于精确技术的耕地作物生产中,强调了生产单位及其环境之间持续分析和优化的重要性。还应当指出,新制度有助于协调农业生产力和环境完整性。该研究还介绍了在许多方面给油田生产的技术和技术发展带来根本性变化的研究结果。作者认为,将农业、景观和自然生态系统的子系统视为一个综合单元,将创造一个新的学术交叉学科。ICT,强调WSN(无线传感器网络)、遥感、云计算、AI(人工智能)、经济学、社会学、伦理学,以及与年轻学生在教育方面的合作,可以在研究中发挥重要作用。这项研究根据可持续性标准对待这些学科。目标是帮助管理层实现减少自然生态系统脆弱性的最重要期望。作者认为,这篇文章可能是一个新的跨学科ALNE的起点之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Challenges of sustainable agricultural development with special regard to Internet of Things: Survey
If 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.
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来源期刊
Progress in Agricultural Engineering Sciences
Progress in Agricultural Engineering Sciences Engineering-Industrial and Manufacturing Engineering
CiteScore
1.80
自引率
0.00%
发文量
6
期刊介绍: The Journal publishes original papers, review papers and preliminary communications in the field of agricultural, environmental and process engineering. The main purpose is to show new scientific results, new developments and procedures with special respect to the engineering of crop production and animal husbandry, soil and water management, precision agriculture, information technology in agriculture, advancements in instrumentation and automation, technical and safety aspects of environmental and food engineering.
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