| Literature DB >> 35679287 |
Priya Rani Bhagat1, Farheen Naz1, Robert Magda1,2.
Abstract
There is a dearth of literature that provides a bibliometric analysis concerning the role of Artificial Intelligence (AI) in sustainable agriculture therefore this study attempts to fill this research gap and provides evidence from the studies conducted between 2000-2021 in this field of research. The study is a systematic bibliographic analysis of the 465 previous articles and reviews done between 2000-2021 in relation to the utilization of AI in sustainable methods of agriculture. The results of the study have been visualized and presented using the VOSviewer and Biblioshiny visualizer software. The results obtained post analysis indicate that, the amount of academic works published in the field of AI's role in enabling sustainable agriculture increased significantly from 2018. Therefore, there is conclusive evidence that the growth trajectory shows a significant climb upwards. Geographically analysed, the country collaboration network highlights that most number of studies in the realm of this study originate from China, USA, India, Iran, France. The co-author network analysis results represent that there are multi-disciplinary collaborations and interactions between prominent authors from United States of America, China, United Kingdom and Germany. The final framework provided from this bibliometric study will help future researchers identify the key areas of interest in research of AI and sustainable agriculture and narrow down on the countries where prominent academic work is published to explore co-authorship opportunities.Entities:
Mesh:
Year: 2022 PMID: 35679287 PMCID: PMC9182339 DOI: 10.1371/journal.pone.0268989
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.752
Fig 1Bibliometric procedure used to conduct the study.
Main information about literature in AI and sustainable agriculture.
| Description | Results |
|---|---|
|
| |
| Timespan | 2000:2021 |
| Sources (Journals, Books, etc.) | 270 |
| Documents | 465 |
| Average years from publication | 3.68 |
| Average citations per documents | 17.92 |
| Average citations per year per doc | 3.37 |
| References | 33551 |
|
| |
| articles | 399 |
| review | 66 |
|
| |
| 3288 | |
| Author’s Keywords (DE) | 1787 |
|
| |
| Authors | 2005 |
| Author Appearances | 2202 |
| Authors of single-authored documents | 15 |
| Authors of multi-authored documents | 1990 |
|
| |
| Single-authored documents | 16 |
| Documents per Author | 0.232 |
| Authors per Document | 4.31 |
| Co-Authors per Documents | 4.74 |
| Collaboration Index | 4.43 |
Fig 2Year-wise articles.
Country wise production of articles.
| No. | Region | Frequency | No. | Region | Frequency |
|---|---|---|---|---|---|
|
| China | 210 |
| Netherlands | 37 |
|
| USA | 147 |
| Brazil | 33 |
|
| India | 102 |
| Turkey | 25 |
|
| Iran | 56 |
| Malaysia | 22 |
|
| France | 54 |
| Canada | 20 |
|
| Italy | 51 |
| Indonesia | 20 |
|
| UK | 48 |
| Pakistan | 18 |
|
| Germany | 46 |
| Switzerland | 18 |
|
| Spain | 43 |
| Belgium | 16 |
|
| Australia | 42 |
| Portugal | 16 |
Country wise citation.
| No. | Country | Total Citations | Ave. Article Citations | No. | Country | Total Citations | Ave. Article Citations |
|---|---|---|---|---|---|---|---|
|
| USA | 1938 | 51 |
| Iran | 160 | 7.273 |
|
| China | 1141 | 17.554 |
| France | 151 | 12.583 |
|
| UK | 576 | 33.882 |
| Algeria | 136 | 68 |
|
| Netherlands | 453 | 41.182 |
| Brazil | 115 | 14.375 |
|
| Germany | 386 | 27.571 |
| Canada | 112 | 16 |
|
| India | 345 | 11.129 |
| Sweden | 112 | 112 |
|
| Australia | 343 | 31.182 |
| Greece | 96 | 16 |
|
| Italy | 286 | 15.889 |
| Switzerland | 93 | 15.5 |
|
| Malaysia | 249 | 31.125 |
| Thailand | 88 | 14.667 |
|
| Spain | 189 | 9.947 |
| Austria | 85 | 21.25 |
Most relevant journals.
| No. | Sources | Articles |
|---|---|---|
|
| Sustainability (Switzerland) | 32 |
|
| Agronomy | 16 |
|
| Computers And Electronics in Agriculture | 12 |
|
| Science of the Total Environment | 12 |
|
| Journal of Cleaner Production | 9 |
|
| Agricultural Water Management | 7 |
|
| Land Use Policy | 7 |
|
| Agriculture Ecosystems and Environment | 6 |
|
| Agronomy For Sustainable Development | 6 |
|
| Ecological Indicators | 6 |
Most relevant authors.
| No. | Authors | Articles |
|---|---|---|
|
| Li X | 5 |
|
| Wang X | 5 |
|
| Chen Z | 4 |
|
| Feng X | 4 |
|
| Kumar A | 4 |
|
| Kumar S | 4 |
|
| Liu Y | 4 |
|
| Wang Y | 4 |
|
| Zhang Y | 4 |
|
| Ahmad A | 3 |
Most important organizations.
| No. | Affiliations | Articles |
|---|---|---|
|
| Wageningen University | 13 |
|
| China Agricultural University | 12 |
|
| Northwest A&F University | 10 |
|
| Michigan State University | 9 |
|
| University of Tehran | 9 |
|
| Sichuan Agricultural University | 8 |
|
| University of Bonn | 8 |
|
| Nanjing Agricultural University | 7 |
|
| University of California | 7 |
|
| Huazhong Agricultural University | 6 |
Fig 3Top keywords in the field of AI and sustainable agriculture.
Fig 4Author collaboration for AI and sustainable agriculture research work.
Fig 5Country collaboration for AI and sustainable agriculture research work.
Some recent studies conducted in the field of AI and sustainable agriculture.
| Article | Area | Technique/Application | Objective | Proposition |
|---|---|---|---|---|
| Knowledge mapping of machine learning approaches applied in agricultural management—A scientometric review with citespace [ | Agriculture management | Machine learning | To identify recent research based on machine learning methods in agricultural management | Integrated research of more methods in material management. |
| Citizen science for sustainable agriculture–A systematic literature review [ | Sustainable agriculture | Citizen science | To identify emerging trends in citizen-science studies | Increase sample size and make research more stakeholder oriented (Ex. Farmers) |
| A review of applications and communication technologies for internet of things (IoT) and unmanned aerial vehicle (UAV) based sustainable smart farming [ | Communication technologies, sustainable smart farming | IoT & UAV based sustainable farming | Identify advantages and usages of IoT and UAV in advanced farming methods, IoT, network functions and network essentials for smart farming | Research required in the areas of resource management, hardware maintenance, security issues arising from connected systems, large scale data maintenance |
| Research advances and applications of bio-sensing technology for the diagnosis of pathogens in sustainable agriculture [ | Pathogens detection in sustainable agriculture | Bio-sensing | A review of bio-sensor methods for disease identification in food production and the agricultural industry | Further integration of other techniques in increasing sensitivity of autonomous detection bio-sensors |
| Integrated technologies toward sustainable agriculture supply chains: missing links [ | Supply chain | Information communication technology | Finding the missing links in the study of utilizing integrated enabling technologies to achieve sustainable, circular agriculture supply chain | Study the technologies enabling further advancement in reaching UN sustainable development goals |
| Scientometric analysis of the application of artificial intelligence in agriculture [ | Agriculture | Artificial Intelligence | Scientometric review to identify the academic collection of the application of artificial intelligence in agriculture | Further research specifically focused on precision farming application of artificial intelligence |
| Automatic identification of diseases in grains crops through computational approaches: A review [ | Disease identification | Artificial Neural Network | Review of 109 peer-reviewed articles on early stage detection of diseases on maize, rice, wheat, soybean, and barley to improve production. The article provides an integrated taxonomy of grain plant leaf diseases | Additional accurate classification may be improved by integrating optimization processes or techniques based on fuzzy set theory, rough set theory by utilizing classification algorithms in existing literature |
| A review of autonomous agricultural vehicles (The experience of Hokkaido University) [ | Agriculture process automation | Robotics | Review of autonomous agricultural vehicles (AAV), their components and their advantages and disadvantages | Continued development of robotic AAV for the benefit of stakeholder in agriculture |
| A review of remote sensing applications in agriculture for food security: Crop growth and yield, irrigation, and crop losses [ | Food security | Remote-sensing | Overview of utilization of satellite remote sensing information in analysis and agriculture management in ecohydrology | Development of algorithms that ascertain the yield in heterogeneous agricultural systems |
| A systematic literature review on machine learning applications for sustainable agriculture supply chain performance [ | Supply chain performance | Machine learning | Systematic review of 93 research papers on machine learning (ML) solutions in agricultural supply chain process | Use of ML in transforming present production procedures into data-driven smart manufacturing systems and developing customer focused applications based on consumer purchase behaviour |
Fig 6Proposed research framework.