物联网赋能无土农业,提升资源效率与粮食安全
Internet of Things-Based Smart Precision Farming in Soilless Agriculture: Opportunities and Challenges for Global Food Security
- 融合物联网实现环境实时监控与自动调控
- 可实现节水节肥、高产稳产的全年种植
- 适合城市农业与可持续发展研究者参考
全球人口增长与可耕地持续减少对粮食安全构成严峻挑战,气候变化进一步加剧了这一问题。无土农业(如水培、气雾培、鱼菜共生)通过在可控环境中高效种植作物,提供可持续解决方案。将物联网(IoT)与智能精准农业结合,可提升资源利用效率,自动化环境控制,保障稳定高产。物联网驱动的智能系统通过实时监测、数据决策和自动化技术,优化水肥使用并减少人工干预。本文探讨了物联网支持的无土农业在可持续农业、城市农业及全球粮食安全中的机遇与挑战。这些技术可显著提高产量、节约资源并实现全年生产,但也面临初期投资高、技术依赖性强、能耗高等问题。通过文献计量分析与对比研究,本文揭示了当前趋势与研究空白,并为研究人员、政策制定者与产业界指明未来创新与规模化方向。强调垂直农场与受控环境农业(CEA)支持的无土技术,有助于推动农业可持续转型。
原文摘要 · Abstract (English)
The rapid growth of the global population and the continuous decline in cultivable land pose significant threats to food security. This challenge worsens as climate change further reduces the availability of farmland. Soilless agriculture, such as hydroponics, aeroponics, and aquaponics, offers a sustainable solution by enabling efficient crop cultivation in controlled environments. The integration of the Internet of Things (IoT) with smart precision farming improves resource efficiency, automates environmental control, and ensures stable and high-yield crop production. IoT-enabled smart farming systems utilize real-time monitoring, data-driven decision-making, and automation to optimize water and nutrient usage while minimizing human intervention. This paper explores the opportunities and challenges of IoT-based soilless farming, highlighting its role in sustainable agriculture, urban farming, and global food security. These advanced farming methods ensure greater productivity, resource conservation, and year-round cultivation. However, they also face challenges such as high initial investment, technological dependency, and energy consumption. Through a comprehensive study, bibliometric analysis, and comparative analysis, this research highlights current trends and research gaps. It also outlines future directions for researchers, policymakers, and industry stakeholders to drive innovation and scalability in IoT-driven soilless agriculture. By emphasizing the benefits of vertical farming and Controlled Environment Agriculture (CEA)-enabled soilless techniques, this paper supports informed decision-making to address food security challenges and promote sustainable agricultural innovations.
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