668 Pages new Report "Agricultural Robots: Market Shares, Strategies, and Forecasts, 2017 to 2023" available at ReportsnReports.com
Pune, Maharashtra -- (SBWIRE) -- 05/03/2017 -- The agricultural robots market at $1.7 billion in 2016 is expected to grow to $27.1 billion by 2023. Agricultural Robots: users harness robots to plow, plant, spray, prune, milk, pick, shear, and harvest. As economies of scale are achieved, markets will grow rapidly.
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Agriculture is the second greatest source of employment worldwide, and the least automated of all industries. Agriculture is the largest remaining opportunity for automation. Agriculture has become more mechanized so that many crops are harvested using machinery worldwide. Agricultural continues its declining employment trend as robotics are adopted.
Robots are used for harvesting. High value crops are a target of agricultural robotic development. What could be tastier than a strawberry, perfectly formed, and perfectly ripened? New agricultural robots are able to improve the delivery of consistent quality food, and to implement efficiency in managing food production. Strawberries are a high profit crop.
A new generation of machines has just been born. Strawberry harvesters with the world's most advanced technology to give maximum performance to a farm. Harvesting robots can optimize the productivity of the farming business. Growers can get the best results in a berry farm using automated process. Automated picking collection systems improve labor productivity, give speed and agility to harvest operations.
Employment opportunity will come from human implementation of digitation, building APIs that make digital connections and building algorithms that make sense of digital data collected. There is plenty of work for humans to figure out how to react to alerts generated by digital algorithms.
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Market Leaders: Lely, Tetrelaval / DeLaval, Yaskawa / Motoman, Yamaha, Kuka
Market Participants: 8Villages, ABB Robotics, Adigo, AeroVironment, Agile Planet, AgRA: RAS Agricultural Robotics and Automation (AgRA, Agribotix, Agrobot, AquaSpy, Australian Centre for Field Robotics, Autonomous Tractor Corp. (ATC), Avular B.V, Blue River Technology, Bosch Deepfield Robotics, Clearpath Robotics, Rowbot, CNH Industrial / Fiat / Case IH, cRops, Cyphy Works, Digital Harvest, DJI Innovations, ecoRobotix, Fanuc, FarmBot, Frank Poulsen Engineering, Georgia Tech Agricultural Robots, Google, Harvard Robobee, Harvest Automation, HoneyComb, IBM, iRobot, Jaybridge Robotics, John Deere, Kinze Manufacturing, Kuka, KumoTek, Kyoto University, Lely, LemnaTec Phenomics, Millennial Net, Japan: National Agriculture and Food Research Organization, Ossian Agro Automation / Nano Ganesh, Parrot/senseFly, Precise Path Robotics, Robotic Harvesting, SAGA – Swarm Robotics for Agricultural Applications, Sentera, Sicily Tractor Harvesting, Shibuya Seiki, Spread, Sustainable Harvest, Tetrelaval, DeLaval Sustainable Dairy Farming, Trimble, Universidad Politécnica de Madrid, University of California, Davis, Vision Robotics, Wall-Ye V.I.N. Robot, Yamaha, Yaskawa
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Key Topics Covered:
1. Agricultural Robot Market Description and Market Dynamics
2. Agricultural Robots Market Shares and Market Forecasts
3. Agricultural Robots Product Description
4 Harvest Automation Proprietary Sensor Technology
5 Agricultural Robots Company Description
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