Technological Applications in Smart Farming: A Bibliometric Analysis

Jonitha Anand, Dr. Nooraini Yusoff, Ts. Dr. Hadhrami, Ab Ghani, Dr. Kiran Kumar Thoti
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Abstract

Precision agriculture, often known as smart farming, employs cutting-edge technology to change farming processes. This paper covers smart farming's history, important advancements, and possible impacts on agriculture. The essay begins with the history of "smart farming," or precision agriculture, and how GPS technology improved fertilization, pest control, and irrigation. Since then, automation and sensor technology have enabled continuous crop vitality, moisture, and environmental monitoring, enabling empirical decision-making. Networking technologies, especially the Internet of Things, have transformed smart farming. Farmers may gather, analyze, and apply real-time data using connected drones, satellite images, and farm management software. Big data analytics and AI allow farmers to leverage enormous datasets for crop health monitoring, production forecasts, and resource management. Smart farming improves accuracy and sustainability. By using resources efficiently, farmers may reduce their environmental impact. Due to remote monitoring and control, farmers can adapt to changing conditions and manage their operations from anywhere. Smart farming has numerous benefits, but various barriers limit its broad implementation. Due to expensive startup costs, specialized training, and limited Internet connection, some farmers are unwilling to use these technologies. Governments, NGOs, and industry actors must collaborate to provide financing, training, and improved connections to address these difficulties. This review and study of smart farming's growth highlights its revolutionary potential in agriculture. Smart farming may enhance output, optimize input returns, and ensure long-term viability, making it an exciting new route for agriculture.
智能农业中的技术应用:文献计量分析
精准农业通常被称为智能农业,它采用尖端技术来改变农业生产流程。本文介绍了智能农业的历史、重要进展以及可能对农业产生的影响。文章首先介绍了 "智能农业 "或精准农业的历史,以及全球定位系统技术如何改进施肥、病虫害防治和灌溉。此后,自动化和传感器技术实现了对作物生命力、湿度和环境的连续监测,使经验决策成为可能。网络技术,尤其是物联网,改变了智能农业。农民可以利用联网的无人机、卫星图像和农场管理软件收集、分析和应用实时数据。大数据分析和人工智能使农民能够利用庞大的数据集进行作物健康监测、生产预测和资源管理。智能农业提高了准确性和可持续性。通过有效利用资源,农民可以减少对环境的影响。通过远程监测和控制,农民可以适应不断变化的条件,随时随地管理他们的业务。智能农业好处多多,但各种障碍限制了其广泛实施。由于昂贵的启动成本、专业培训和有限的互联网连接,一些农民不愿意使用这些技术。政府、非政府组织和行业参与者必须合作提供资金、培训和更好的连接,以解决这些困难。本报告对智能农业发展的回顾和研究凸显了其在农业领域的革命性潜力。智能农业可提高产出,优化投入回报,确保长期生存能力,是农业发展的一条令人兴奋的新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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