The Business Research Company’s report on the Harvesting Robot Market provides insights into the global market size, growth rate, regional distribution, competitive landscape, key segments, emerging trends, and strategic opportunities.
How are market drivers shaping the future growth trajectory of the harvesting robot industry?
The rise in the adoption of automation in agriculture is expected to drive the growth of the harvesting robot market going forward. Automation in agriculture refers to using technology and machinery to perform agricultural tasks with minimal human intervention. It involves the application of advanced tools, such as robotics, sensors, drones, and artificial intelligence (AI), to streamline farming processes, increase efficiency, and reduce labor dependency. The rise in automation in agriculture is driven by the need to improve efficiency, reduce labor costs, and address the growing demand for food. Harvesting robots provide a solution by automating fruit and vegetable picking tasks, leading to increased investment in scalable, long-term solutions. For instance, in 2022, according to the Food and Agriculture Organization, an Italy-based United Nations agency for food security, reported that, approximately 14% of agricultural retailers in the United States offered drone-based input application services, this figure projected to rise to 29% by 2024. Therefore, the rise in the adoption of automation in agriculture is driving the growth of the harvesting robot market.
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What is the estimated market size of the harvesting robot sector by 2029, based on current forecasts?
The harvesting robot market size has grown rapidly in recent years. It will grow from $1.19 billion in 2024 to $1.41 billion in 2025 at a compound annual growth rate (CAGR) of 18.3%. The growth in the historic period can be attributed to rise in labor shortages in agriculture, increase in demand for automation, rise in costs of manual harvesting, increase in need for precision agriculture, surge in government incentives for agri-tech adoption, and growth in consumer demand for high-quality produce.
The harvesting robot market size is expected to see rapid growth in the next few years. It will grow to $2.73 billion in 2029 at a compound annual growth rate (CAGR) of 17.9%. The growth in the forecast period can be attributed to increasing labor shortages in agriculture, rising demand for precision farming technologies, government subsidies for agricultural automation, growing investments in agri-tech startups, expanding use of IoT and connectivity in smart farming, and the push for sustainable farming practices to address environmental concerns. Major trends in the forecast period include integration of AI technology in agricultural robots, adoption of greenhouse farms, advancements in precision farming with drone technology, advancements in AI and machine learning for crop identification, and advancements in AI and machine vision technology.
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Who are the top players in the harvesting robot market?
Major companies operating in the harvesting robot market are Panasonic Holdings Corporation, John Deere, DENSO Corporation, Teradyne Inc., Lely Industries N.V., Blue River Technology, Clearpath Robotics Inc., FarmWise, Advanced Farm Technologies, Ecorobotix, Iron Ox, Tevel Aerobotics Technologies, Harvest Automation, Yanmar, Robotic Harvesting, MetoMotion, Energid Technologies, Abundant Robotics, Agrobot, Dogtooth Technologies, FFRobotics, Four Growers, Octinion, Traptic, AvL Motion
What are the major trends in the harvesting robot market?
Major companies operating in the harvesting robot market are focusing on adopting advanced technology for robots, such as cluster and peduncle detection LED in harvesting robots, to enhance the precision and efficiency of crop harvesting, reduce the risk of damage to plants, and improve overall harvesting outcomes. Cluster and peduncle detection LEDs are advanced sensors in harvesting robots that help accurately identify fruit clusters and stems, ensuring efficient and precise harvesting without causing harm to the plants. For instance, in May 2024, DENSO Corporation, a Japan-based automotive manufacturing company, and its subsidiary company Certhon Build B.V., a Netherlands-based horticulture company, launched Artemy. It is a cutting-edge robot that fully automates the process of harvesting cherry truss tomatoes, utilizing AI for ripeness detection and various advanced functions such as automatic lane changes, crate replacements, and crate transfers. With a long-lasting battery and precise detection LEDs, Artemy enables continuous harvesting, improving efficiency and reducing labor for farmers.
Which geography holds the highest harvesting robot market share?
North America was the largest region in the harvesting robot market in 2024. Asia-Pacific is expected to be the fastest-growing region in the forecast period. The regions covered in the harvesting robot market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa.
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How do different segments contribute to the overall expansion of the harvesting robot market?
The harvesting robot market covered in this report is segmented –
1) By Robot Type: Semi-Autonomous Robots, Fully-Autonomous Robots
2) By Harvesting Type: Fruit Harvesting, Vegetable Harvesting, Grain Harvesting, Other Harvesting Types
3) By Farming Environment: Indoor, Outdoor
4) By Application: Harvest Management, Field Farming, Dairy And Livestock Management, Irrigation Management, Pruning Management, Weather Tracking And Monitoring, Inventory Management, Other Applications
5) By End-User: Farmers Or Individuals, Large-Scale Commercial Farms
Subsegments:
1) By Semi-Autonomous Robots: Sensor-Guided Harvesting Robots, Remote-Controlled Harvesting Robots, Assisted Navigation Harvesting Robots
2) By Fully-Autonomous Robots: AI-Powered Harvesting Robots, Vision-Based Harvesting Robots, Multi-Crop Harvesting Robots
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How is the harvesting robot market defined?
A harvesting robot is an autonomous machine efficiently collecting crops from agricultural fields. These robots are equipped with advanced sensors and artificial intelligence, enabling them to navigate fields, identify ripe produce, and harvest it without human intervention. A harvesting robot aims to increase productivity and reduce labor costs, aiding the transition to more efficient and sustainable agricultural practices. They minimize crop damage during harvesting, enhance food security, support agricultural goals, and promote a sustainable, resilient farming system.
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