Toward a Better Understanding of Robot Energy Consumption in Agroecological Applications

Fuente: arXiv
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Main Authors: Bras, Alexis, Montanaro, Alix, Pierre, Cyrille, Pradel, Marilys, Laconte, Johann
Format: Preprint
Published: 2024
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author Bras, Alexis
Montanaro, Alix
Pierre, Cyrille
Pradel, Marilys
Laconte, Johann
author_facet Bras, Alexis
Montanaro, Alix
Pierre, Cyrille
Pradel, Marilys
Laconte, Johann
contents In this paper, we present a comprehensive analysis and discussion of energy consumption in agricultural robots. Robots are emerging as a promising solution to address food production and agroecological challenges, offering potential reductions in chemical use and the ability to perform strenuous tasks beyond human capabilities. The automation of agricultural tasks introduces a previously unattainable level of complexity, enabling robots to optimize trajectories, control laws, and overall task planning. Consequently, automation can lead to higher levels of energy optimization in agricultural tasks. However, the energy consumption of robotic platforms is not fully understood, and a deeper analysis of contributing factors is essential to optimize energy use. We analyze the energy data of an automated agricultural tractor performing tasks throughout the year, revealing nontrivial correlations between the robot's velocity, the type of task performed, and energy consumption. This suggests a tradeoff between task efficiency, time to completion, and energy expenditure that can be harnessed to improve the energy efficiency of robotic agricultural operations.
format Preprint
id arxiv_https___arxiv_org_abs_2410_07697
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Toward a Better Understanding of Robot Energy Consumption in Agroecological Applications
Bras, Alexis
Montanaro, Alix
Pierre, Cyrille
Pradel, Marilys
Laconte, Johann
Robotics
68T40
In this paper, we present a comprehensive analysis and discussion of energy consumption in agricultural robots. Robots are emerging as a promising solution to address food production and agroecological challenges, offering potential reductions in chemical use and the ability to perform strenuous tasks beyond human capabilities. The automation of agricultural tasks introduces a previously unattainable level of complexity, enabling robots to optimize trajectories, control laws, and overall task planning. Consequently, automation can lead to higher levels of energy optimization in agricultural tasks. However, the energy consumption of robotic platforms is not fully understood, and a deeper analysis of contributing factors is essential to optimize energy use. We analyze the energy data of an automated agricultural tractor performing tasks throughout the year, revealing nontrivial correlations between the robot's velocity, the type of task performed, and energy consumption. This suggests a tradeoff between task efficiency, time to completion, and energy expenditure that can be harnessed to improve the energy efficiency of robotic agricultural operations.
title Toward a Better Understanding of Robot Energy Consumption in Agroecological Applications
topic Robotics
68T40
url https://arxiv.org/abs/2410.07697