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农业机器人在田间作业中的应用。

Agricultural Robotics for Field Operations.

机构信息

Agricultural University of Athens, Iera Odos 75, 11855 Athens, Greece.

Fraunhofer IPA, Nobelstr 12, 70569 Stuttgart, Germany.

出版信息

Sensors (Basel). 2020 May 7;20(9):2672. doi: 10.3390/s20092672.

Abstract

Modern agriculture is related to a revolution that occurred in a large group of technologies (e.g., informatics, sensors, navigation) within the last decades. In crop production systems, there are field operations that are quite labour-intensive either due to their complexity or because of the fact that they are connected to sensitive plants/edible product interaction, or because of the repetitiveness they require throughout a crop production cycle. These are the key factors for the development of agricultural robots. In this paper, a systematic review of the literature has been conducted on research and commercial agricultural robotics used in crop field operations. This study underlined that the most explored robotic systems were related to harvesting and weeding, while the less studied were the disease detection and seeding robots. The optimization and further development of agricultural robotics are vital, and should be evolved by producing faster processing algorithms, better communication between the robotic platforms and the implements, and advanced sensing systems.

摘要

现代农业与过去几十年中发生的一系列技术革命息息相关(例如信息学、传感器、导航等)。在作物生产系统中,有一些田间作业由于其复杂性或与敏感植物/可食用产品相互作用有关,或者由于它们在整个作物生产周期中需要重复进行,因此劳动力投入很大。这些是农业机器人发展的关键因素。本文对用于作物田间作业的研究和商业农业机器人进行了系统的文献回顾。这项研究强调,探索最多的机器人系统与收获和除草有关,而研究较少的是疾病检测和播种机器人。农业机器人的优化和进一步发展至关重要,应该通过生产更快的处理算法、提高机器人平台和机具之间的通信能力以及先进的传感系统来实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e04a/7273211/eb8d1aefe7b4/sensors-20-02672-g001.jpg

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