Agricultural Robots Roaming Fields and Livestock Houses
Collection Robots 2026.09.18

Agricultural Robots Roaming Fields and Livestock Houses

Real smart agriculture equipment handling seeding, weeding, milking, and transportation

Agricultural robots don't only refer to harvesting robots. There are devices that remember where seeds were planted to remove weeds, selectively target weeds with lasers, milk cows when they want, or carry heavy harvest boxes on behalf of workers. As crops and terrain change, so do the necessary sensors and modes of movement. The seasons also play a significant role.

This list gathers robots and autonomous agricultural machines aimed at actual use in fields, orchards, vineyards, and livestock houses. By looking at the types of tasks, location recognition, and power methods, we can understand how they reduce burdens within the overall workflow of agricultural tasks beyond just drone driving. We also need to consider the application conditions by crop and region.

LaserWeeder G2

LaserWeeder G2 is the first item to explore in our list of technologies for automating agricultural tasks based on crop, terrain, and season. It is an autonomous weeding robot developed by Carbon Robotics, responsible for removing weeds between crops. Using a camera to distinguish between crops and weeds, it targets weeds with a high-power laser. Focusing on this feature of LaserWeeder G2, we can specifically compare its role with other devices on the same subject.

The registration information for LaserWeeder G2 includes: developer/manufacturer 'Carbon Robotics', type 'autonomous weeding robot', main task 'removing weeds between crops', operation method 'computer vision & laser', operational stage 'commercial agricultural machinery'. When selecting or evaluating, check the criteria, 'Soil and slope, as well as crop spacing, must match actual farm conditions—LaserWeeder G2'. The provided regions, specifications, and operational stages of LaserWeeder G2 should be confirmed based on the latest guidance from connected official materials.
개발·제조 Carbon Robotics 유형 자율 제초 로봇 주요 임무 작물 사이 잡초 제거 작동 방식 컴퓨터 비전·레이저 운용 단계 상용 농기계
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FarmDroid FD20

FarmDroid FD20 is the second item to explore in our list of technologies for automating agricultural tasks based on crop, terrain, and season. It is an autonomous seeding and weeding robot developed by FarmDroid, responsible for seeding in fields and mechanical weeding. This solar-powered robot remembers seeding locations and mechanically weeds between crops and rows. Focusing on this feature of FarmDroid FD20, we can specifically compare its role with other devices on the same subject.

The registration information for FarmDroid FD20 includes: developer/manufacturer 'FarmDroid', type 'autonomous seeding and weeding robot', main task 'seeding in fields and mechanical weeding', operation method 'RTK GPS & solar power', operational stage 'commercial agricultural machinery'. When selecting or evaluating, check the criteria, 'It's necessary to record working times and human supplementary tasks together through a test operation over a season—FarmDroid FD20'. The provided regions, specifications, and operational stages of FarmDroid FD20 should be confirmed based on the latest guidance from connected official materials.
개발·제조 FarmDroid 유형 자율 파종·제초 로봇 주요 임무 밭 파종과 기계식 제초 작동 방식 RTK GPS·태양광 운용 단계 상용 농기계
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Lely Astronaut A5

Lely Astronaut A5 is the third item to explore in our list of technologies for automating agricultural tasks based on crop, terrain, and season. This is an automatic milking robot from Lely, responsible for milking cows and collecting individual data. When a cow enters by itself, it locates the udder to milk and records health and production data. Focusing on this feature of Lely Astronaut A5, we can specifically compare its role with other devices on the same subject.

The registration information for Lely Astronaut A5 includes: developer/manufacturer 'Lely', type 'automatic milking robot', main task 'milking cows and collecting individual data', operation method 'vision, robotic arm & sensors', operational stage 'commercial livestock equipment'. When selecting or evaluating, check the criteria, 'Emergency stop and boundary management are essential in areas where people and animals can approach—Lely Astronaut A5'. The provided regions, specifications, and operational stages of Lely Astronaut A5 should be confirmed based on the latest guidance from connected official materials.
개발·제조 Lely 유형 자동 착유 로봇 주요 임무 젖소 착유와 개체 데이터 수집 작동 방식 비전·로봇팔·센서 운용 단계 상용 축산 장비
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Naïo Oz

Naïo Oz is the fourth item to explore in our list of technologies for automating agricultural tasks based on crop, terrain, and season. This miniature agricultural robot from Naïo Technologies is responsible for mechanical weeding in vegetable fields. It drives between narrow rows of vegetable crops and can pull various weeding tools. Focusing on this feature of Naïo Oz, we can specifically compare its role with other devices on the same subject.

The registration information for Naïo Oz includes: developer/manufacturer 'Naïo Technologies', type 'miniature agricultural robot', main task 'mechanical weeding in vegetable fields', operation method 'RTK GPS & autonomous driving', operational stage 'commercial agricultural machinery'. When selecting or evaluating, check the criteria, 'Soil and slope, as well as crop spacing, must match actual farm conditions—Naïo Oz'. The provided regions, specifications, and operational stages of Naïo Oz should be confirmed based on the latest guidance from connected official materials.
개발·제조 Naïo Technologies 유형 소형 농업 로봇 주요 임무 채소밭 기계식 제초 작동 방식 RTK GPS·자율주행 운용 단계 상용 농기계
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Naïo Ted

Naïo Ted is the fifth item to explore in our list of technologies for automating agricultural tasks based on crop, terrain, and season. This vineyard robot from Naïo Technologies is responsible for soil management between grapevine rows. It is designed to operate weeding and soil working tools while moving between vineyard rows. Focusing on this feature of Naïo Ted, we can specifically compare its role with other devices on the same subject.

The registration information for Naïo Ted includes: developer/manufacturer 'Naïo Technologies', type 'vineyard robot', main task 'soil management between grapevine rows', operation method 'autonomous driving & electric drive', operational stage 'commercial agricultural machinery'. When selecting or evaluating, check the criteria, 'It's necessary to record working times and human supplementary tasks together through a test operation over a season—Naïo Ted'. The provided regions, specifications, and operational stages of Naïo Ted should be confirmed based on the latest guidance from connected official materials.
개발·제조 Naïo Technologies 유형 포도밭 로봇 주요 임무 포도나무 줄 사이 토양 관리 작동 방식 자율주행·전동 구동 운용 단계 상용 농기계
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AgXeed AgBot 5.115T2

AgXeed AgBot 5.115T2 is the sixth item to explore in our list of technologies for automating agricultural tasks based on crop, terrain, and season. This is an autonomous agricultural tractor from AgXeed, responsible for plowing, seeding, and towing agricultural tasks. This unmanned tracked platform performs repetitive field tasks by towing standard agricultural tools. Focusing on this feature of AgXeed AgBot 5.115T2, we can specifically compare its role with other devices on the same subject.

The registration information for AgXeed AgBot 5.115T2 includes: developer/manufacturer 'AgXeed', type 'autonomous agricultural tractor', main task 'plowing, seeding, and towing agricultural tasks', operation method 'autonomous driving & remote operation planning', operational stage 'commercial agricultural machinery'. When selecting or evaluating, check the criteria, 'Emergency stop and boundary management are essential in areas where people and animals can approach—AgXeed AgBot 5.115T2'. The provided regions, specifications, and operational stages of AgXeed AgBot 5.115T2 should be confirmed based on the latest guidance from connected official materials.
개발·제조 AgXeed 유형 자율 농업 트랙터 주요 임무 경운·파종·농작업 견인 작동 방식 자율주행·원격 작업 계획 운용 단계 상용 농기계
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John Deere 8R Autonomous Tractor

John Deere 8R Autonomous Tractor is the seventh item to explore in our list of technologies for automating agricultural tasks based on crop, terrain, and season. This is an autonomous tractor from John Deere, responsible for large-scale field plowing. It utilizes cameras and satellite navigation to provide a system for farmers to check status via an app. Focusing on this feature of John Deere 8R Autonomous Tractor, we can specifically compare its role with other devices on the same subject.

The registration information for John Deere 8R Autonomous Tractor includes: developer/manufacturer 'John Deere', type 'autonomous tractor', main task 'large-scale field plowing', operation method 'GPS, 360-degree camera, & remote app', operational stage 'commercial solution'. When selecting or evaluating, check the criteria, 'Soil and slope, as well as crop spacing, must match actual farm conditions—John Deere 8R Autonomous Tractor'. The provided regions, specifications, and operational stages of John Deere 8R Autonomous Tractor should be confirmed based on the latest guidance from connected official materials.
개발·제조 John Deere 유형 자율 트랙터 주요 임무 대규모 밭 경운 작동 방식 GPS·360도 카메라·원격 앱 운용 단계 상용 솔루션
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Burro

Burro is the eighth item to explore in our list of technologies for automating agricultural tasks based on crop, terrain, and season. It is a farm transport robot from Burro, responsible for transporting harvests in orchards and farms. It either follows workers or repeats routes to reduce the carrying of heavy harvest boxes. Focusing on this feature of Burro, we can specifically compare its role with other devices on the same subject.

The registration information for Burro includes: developer/manufacturer 'Burro', type 'farm transport robot', main task 'transporting harvests in orchards and farms', operation method 'vision-based autonomous driving & follow', operational stage 'commercial product'. When selecting or evaluating, check the criteria, 'It's necessary to record working times and human supplementary tasks together through a test operation over a season—Burro'. The provided regions, specifications, and operational stages of Burro should be confirmed based on the latest guidance from connected official materials.
개발·제조 Burro 유형 농장 운반 로봇 주요 임무 과수원·농장의 수확물 운반 작동 방식 비전 기반 자율주행·팔로우 운용 단계 상용 제품
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The effectiveness of agricultural robots is not determined solely by large areas or the latest features. Crop spacing, soil condition, slope, communication environment, and compatibility with existing agricultural tools actually influence the workload. Weeding robots may reduce pesticide use, but depending on speed, weather, and weed conditions, human supplementary tasks may still be necessary.

Before introducing them, it's safer to record working times and confirm malfunction response and parts supply through a test operation over a season. For autonomous equipment, area management and emergency stop procedures are essential in environments where people and animals may approach. The most realistic automation occurs when a farmer's experience combines with the repetitiveness of robots.

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