Barbosa Júnior Marcelo Rodrigues, Santos Regimar Garcia Dos, Sales Lucas de Azevedo, Oliveira Luan Pereira de
Department of Horticulture, University of Georgia, Tifton, GA 31793, USA.
Plants (Basel). 2024 Nov 30;13(23):3372. doi: 10.3390/plants13233372.
Robotic technologies are affording opportunities to revolutionize the production of specialty crops (fruits, vegetables, tree nuts, and horticulture). They offer the potential to automate tasks and save inputs such as labor, fertilizer, and pesticides. Specialty crops are well known for their high economic value and nutritional benefits, making their production particularly impactful. While previous review papers have discussed the evolution of agricultural robots in a general agricultural context, this review uniquely focuses on their application to specialty crops, a rapidly expanding area. Therefore, we aimed to develop a state-of-the-art review to scientifically contribute to the understanding of the following: (i) the primary areas of robots' application for specialty crops; (ii) the specific benefits they offer; (iii) their current limitations; and (iv) opportunities for future investigation. We formulated a comprehensive search strategy, leveraging Scopus and Web of Science™ as databases and selecting "robot" and "specialty crops" as the main keywords. To follow a critical screening process, only peer-reviewed research papers were considered, resulting in the inclusion of 907 papers covering the period from 1988 to 2024. Each paper was thoroughly evaluated based on its title, abstract, keywords, methods, conclusions, and declarations. Our analysis revealed that interest in agricultural robots for specialty crops has significantly increased over the past decade, mainly driven by technological advancements in computer vision and recognition systems. Harvesting robots have arisen as the primary focus. Robots for spraying, pruning, weed control, pollination, transplanting, and fertilizing are emerging subjects to be addressed in further research and development (R&D) strategies. Ultimately, our findings serve to reveal the dynamics of agricultural robots in the world of specialty crops while supporting suitable practices for more sustainable and resilient agriculture, indicating a new era of innovation and efficiency in agriculture.
机器人技术为特种作物(水果、蔬菜、坚果和园艺作物)的生产带来了变革的机遇。它们具有实现任务自动化以及节省劳动力、肥料和农药等投入的潜力。特种作物以其高经济价值和营养价值而闻名,这使得它们的生产具有特别重大的影响。虽然之前的综述论文在一般农业背景下讨论了农业机器人的发展,但本综述独特地聚焦于它们在特种作物领域的应用,这是一个迅速扩展的领域。因此,我们旨在开展一项前沿综述,以科学地促进对以下方面的理解:(i)机器人在特种作物上的主要应用领域;(ii)它们所带来的具体益处;(iii)它们当前的局限性;以及(iv)未来研究的机会。我们制定了一个全面的搜索策略,利用Scopus和Web of Science™作为数据库,并选择“机器人”和“特种作物”作为主要关键词。为了遵循严格的筛选过程,只考虑经过同行评审的研究论文,最终纳入了907篇涵盖1988年至2024年期间的论文。每篇论文都根据其标题、摘要、关键词、方法、结论和声明进行了全面评估。我们的分析表明,在过去十年中,对用于特种作物的农业机器人的兴趣显著增加,这主要是由计算机视觉和识别系统的技术进步推动的。收获机器人已成为主要关注点。用于喷雾、修剪、杂草控制、授粉、移栽和施肥的机器人是未来研发战略中有待进一步探讨的新兴课题。最终,我们的研究结果有助于揭示农业机器人在特种作物领域的动态,同时支持更可持续和更具韧性的农业的适宜做法,预示着农业创新和效率的新时代。