Agricultural Robots Market valued at $12.5 Billion in 2024 and projected to reach $41 Billion by 2032, growing at a 18.5 % CAGR
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Agricultural Robots Market valued at $12.5 Billion in 2024 and projected to reach $41 Billion by 2032, growing at a 18.5 % CAGR

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Main Control Scheme for Agricultural Picking Robots Based on i.MX8MP CPU Board
With advantages such as modularity, high efficiency, and easy deployment, fully intelligent picking robots have been applied to agricultural fields. From pinpointing to harvesting, from cutting to collecting, it can cover the entire process of agricultural crop picking.
The operational target of agricultural robots is crops, and the characteristics of crops impose higher requirements on the movements of agricultural robots. The end effector of the agricultural robot needs to have flexible handling capabilities when in contact with the operational target. This emphasizes the importance of stability, accuracy, agility, and lightweight in the application of agricultural robots.
Agricultural Robots Main features:
Intelligent navigation:Â Agricultural harvesting robots are equipped with advanced navigation systems, allowing them to autonomously navigate in farmland, achieve precise positioning, and avoid colliding with obstacles.
Visual perception:Â Equipped with machine vision system, it can identify the maturity of fruits or vegetables, realize intelligent identification and positioning, and ensure accurate picking operation.
Flexible arm:Â Equipped with a mechanical arm with multiple degrees of freedom, it can flexibly adapt to fruits of different shapes and sizes to achieve efficient and accurate picking.
Data acquisition:Â Agricultural picking robot can collect real-time data in farmland, such as soil moisture, plant growth status, etc., which provides a scientific basis for agricultural management.
Automatic charging:Â Equipped with intelligent charging system, when the power is low, it can automatically return to the charging station, reduce manual intervention and improve operation efficiency.
With the rapid development of agricultural science and technology, the introduction of agricultural picking robots is pushing agricultural production towards a more intelligent and efficient direction. The FETMX8MP-C CPU board is recommended to be used as the main control scheme of the agricultural picking robot. The advantages of the platform are as follows:
High performance, the CPU uses 1.6GHz quad-core 64-bit Cortex-A53 architecture, which provides the robot with efficient processing capability, enabling it to analyze the data collected in the farmland in real timeï¼›
Built-in powerful neural processing unit (NPU), with a maximum running rate of 2.3 TOPS,provides powerful artificial intelligence computing power for robots;
Abundant high-speed interface resources: It has two Gigabit Ethernet ports, two USB 3.0/2.0 interfaces, PCIe Gen 3, SDIO 3.0 interface and CAN interface (including one CAN-FD) to meet the high-speed connection needs of various sensors and communication devices, so that the robot can achieve intelligent visual perception and positioning, and improve the accuracy and efficiency of picking;
All-weather work, the full industrial design ensures the stable operation of the robot in a variety of complex environments, and realizes the agricultural production service of the weather.
With the powerful performance of NXP i.MX8MP processor, agricultural picking robots will continue to evolve in the future to better adapt to the diversity and complexity of agricultural production. This combination will promote the development of modern agriculture in a more intelligent and digital direction, and improve the efficiency and sustainability of agricultural production.
More info:
Discover the impact of intelligent picking robots and the i.MX8MP CPU board on precision agriculture and modern agricultural production.
Robotics and technologies have spread all over the world just like unchecked weed in the farmland. The difference here between them is, unlike weed, robotics and technologies are helping the world to develop and flourish. Implementing robotics in the field of agriculture has proved a revolutionary technique for maximizing the yield. These innovative technologies are currently being focused at the harvesting stage. Several tasks including weed control, planting seeds, cloud seeding, soil analysis, harvesting environmental monitoring
The production yields have substantially increased after introducing robotics in the field of agriculture. Farmers are getting accustomed to using drones, robotic arms, or autonomous tractors efficiently. These agricultural robots are designed to automate repetitive, slow, and dull tasks for the farmers. This helps the farmers to focus more on improving the overall production yield. Most common tasks that can be done using robots and automation are as followsÂ
Weed control
Harvesting and picking
Phenotyping
Autonomous pruning, mowing, seeding, thinning, and spraying
Utility platforms
Sorting and packing
The most popular use of robots in the field of agriculture is harvesting and picking. A robotic system can be specially designed with a vision system and sensors in order to determine the location and the ripeness of the crops that need to be harvested. It can be programmed to overcome severe environmental conditions, including varying light intensity, dust, wind gust, and temperature swings. A robotic arm can be installed to perfectly maneuver the machine and avoid obstacles. Unlike robots used in industries for lifting up metal parts on an assembly line, these agricultural robots are designed to handle the load carefully and delicately.
Global agricultural robots market is expected to account USD 17 Billion by the end of 2024 with a CAGR of 22% over the forecast period. Based on technology, hardware segment tends to dominate the market due to extensive use of advanced components such as sensors and monitoring device GPS in field farming.