Recent Advancements in Agriculture Robots: Benefits and Challenges

Author:

Cheng Chao,Fu JunORCID,Su HangORCID,Ren Luquan

Abstract

In the development of digital agriculture, agricultural robots play a unique role and confer numerous advantages in farming production. From the invention of the first industrial robots in the 1950s, robots have begun to capture the attention of both research and industry. Thanks to the recent advancements in computer science, sensing, and control approaches, agricultural robots have experienced a rapid evolution, relying on various cutting-edge technologies for different application scenarios. Indeed, significant refinements have been achieved by integrating perception, decision-making, control, and execution techniques. However, most agricultural robots continue to require intelligence solutions, limiting them to small-scale applications without quantity production because of their lack of integration with artificial intelligence. Therefore, to help researchers and engineers grasp the prevalent research status of agricultural robots, in this review we refer to more than 100 pieces of literature according to the category of agricultural robots under discussion. In this context, we bring together diverse agricultural robot research statuses and applications and discuss the benefits and challenges involved in further applications. Finally, directional indications are put forward with respect to the research trends relating to agricultural robots.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Shandong Provincial Natural Science Foundation

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Control and Optimization,Mechanical Engineering,Computer Science (miscellaneous),Control and Systems Engineering

Reference149 articles.

1. (2022, October 28). The Latest State of Food Security and Nutrition Report Shows the World Is Moving Backwards in Efforts to Eliminate Hunger and Malnutrition. Available online: https://www.who.int/news/item/06-07-2022-un-report–global-hunger-numbers-rose-to-as-many-as-828-million-in-2021/.

2. The merits of passive compliant joints in legged locomotion: Fast learning, superior energy efficiency and versatile sensing in a quadruped robot;Hoffmann;J. Bionic Eng.,2017

3. A critical review on agricultural robots;Reddy;Int. J. Mech. Eng. Technol.,2016

4. Shi, Y., Chang, J., Zhang, Q., Liu, L., Wang, Y., and Shi, Z. (2022). Gas Flow Measurement Method with Temperature Compensation for a Quasi-Isothermal Cavity. Machines, 10.

5. Augmented perception for agricultural robots navigation;IEEE Sens. J.,2020

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