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Agricultural Robots: Market Shares, Strategies, and Forecasts, 2017 to 2023

07-21-2017 12:52 PM CET | IT, New Media & Software

Press release from: MarketResearchReports.biz

"The Report Agricultural Robots: Market Shares, Strategies, and Forecasts, 2017 to 2023 provides information on pricing, market analysis, shares, forecast, and company profiles for key industry participants. - MarketResearchReports.biz"

Description
The study addresses the efficiencies gained when robots can work 24 x 7 without getting tired from leveraging the fact that they do not make mistakes. The robots are able to perform repetitive tasks effectively, with cameras they can discern whether fruit is ripe or not and pick only the ripe fruit that can be sold. The robots can go back several times to pick fruit, while human pickers generally make one pass, two at the most. The robots can pick more fruit because they can get more ripe fruit from a tree.
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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.
Lely robotic cow milking systems target large dairy farms implement innovation in agriculture. Successful robotic milking on farms with more than 500 cows is supported. Agriculture faces enormous challenges over the coming decades. Agricultural entrepreneurs have to keep pace with rapid population growth and the need to deliver food at progressively more competitive prices.
Lely supports technical revolutions that help evolve automated process, ranging from forage harvesting machines to milking, feeding and barn equipment. Lely equipment allows successfully increasing the scale of operations.
Safeguarding optimum animal welfare and return on investment is the aim. By partnering with Lely on the milking automation journey, creates benefit from a unique set of management instruments to monitor milk quality, feed/milk conversion ratio for the individual cow or the complete herd. Lely continues to develop knowledge and products for the future. A basic requirement for profitable robotic milking includes attention to feed/milk efficiency.
Freedoms include permitting cows to achieve well-being by achieving more freedom, making it so that the farmers get the most out of their herd. Lely discovered that farmers who use free cow traffic are more successful with robotic milking.
“Using cow milking systems, ore milk per cow and more milk per robot is being achieved. Systems work with less difficulty and with the possibility of working more sociable hours. Many farmers who used to use forced systems have changed over to free cow traffic flow in order to benefit from the advantages of robotic milking.”
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.
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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.
The market for agricultural robots 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.
Companies Profiled
Market Leaders
Lely
Tetrelaval / DeLaval
Yaskawa / Motoman
Yamaha
Kuka
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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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Table of Contents
Agricultural Robot Market Executive Summary 44
Agricultural Robot Market Driving Forces 44
Agricultural Robot Target Markets 49
Robotic Agriculture Trends 50
Agriculture as Part of the Global Economy 54
Role of Agricultural Robots 56
Agricultural Robot Technologies 57
Agricultural Robotic Use of Global Positioning 58
Agricultural Robot Market Shares 59
1. Agricultural Robot Market Description and Market Dynamics 61
1.1 Digitization of Agricultural Markets 61
1.1.1 Shift to Digital Agriculture 62
1.1.2 Digital Farms a Reality 63
1.2 Challenges of Agricultural Robots 69
1.3 Automation In The Agricultural Industry 70
1.3.1 Robots Find A Place in the Agriculture Industry 72
1.3.2 Agricultural Robots Make Production More Efficient 73
1.3.3 Use Of Industrial Robots for Agriculture 74
1.3.4 Agricultural Robotics and Automation 74
1.3.5 Precision Agriculture Info, Analysis, Tools 76
1.3.6 Automatic Guidance 76
1.3.7 Autonomous Machines 76
1.3.8 Drones 77
1.3.9 Breeding + Sensors + Robots 78
1.4 Swarms of Precision Agriculture Robots 79
1.5 Agricultural Robots and Drones: Technologies, Markets, Forecasts 79
1.6 RAS Agricultural Robotics and Automation (AgRA) Technical Committee 80
1.7 Farm Bots Pick, Plant and Drive 82
1.7.1 Relying On Illegal Immigrants Can Be A Legal Liability 82
1.7.2 Harvest Automation Labor Process Automation 83
1.7.3 The Growing Season Is Also The Shipping Season 83
1.8 Improving Nursery Efficiency 85
1.8.1 Small Mobile Robot for Plants and Shrubs 85
1.9 Agricultural Producers Seek To Improve Operations 86
1.9.1 Increasing Cows Days Of Grazing 88
1.10 Inexpensive Robots For Farm Jobs 90
1.11 cRops (Clever Robots for Crops) Robots To Harvest High Value Crops 90
1.12 Strawberries 92
1.12.1 Strawberries in the US 92
1.13 Transformational Agricultural Robots 95
2. Agricultural Robots Market Shares and Market Forecasts 97
2.1 Agricultural Robot Market Driving Forces 97
2.1.1 Agricultural Robot Target Markets 102
2.1.2 Robotic Agriculture Trends 103
2.1.3 Agriculture as Part of the Global Economy 107
2.1.4 Role of Agricultural Robots 108
2.1.5 Agricultural Robot Technologies 110
2.1.6 Agricultural Robotic Use of Global Positioning 111
2.2 Agricultural Robot Market Shares 112
2.2.1 Lely Group Revenue 114
2.2.2 Kuka Use Of Standard Industrial Robots In Agriculture 116
2.2.3 Kuka 116
2.2.4 Fanuc 116
2.2.5 Agrobot High Value Crop Robotic Automation 117
2.2.6 Farmers Business Network 118
2.2.7 Granular 119
2.2.8 John Deere 119
2.2.9 Harvest Automation 121
2.2.10 Vision Robotics 122
2.2.11 Blue River Technology 122
2.2.12 Blue River 122
2.2.13 ecoRobotix 123
2.2.14 Tetra Laval / DeLaval 123
2.3 Agricultural Robot Market Forecasts 123
2.3.1 Agricultural Robot Target Markets 129
2.3.2 Agricultural Robot Market Segments Driverless Tractors, Cow Milking Systems, Process Precision Architecture, and Irrigation Systems 130
2.3.3 Process Precision Agricultural Robot Segments, Wheat, Rice, and Corn Harvesting, Grape and Other Pruning and Harvesting, Golf Course and Lawn Mowing, Nursery Management, Seeding, Planting, Fertilizing, Spraying, Drone Crop Dusting 136
2.3.4 High Value Fruit Crops: Strawberries 140
2.3.5 Nursery And Garden Products 140
2.3.6 Ornamental Plant Markets 140
2.3.7 Crop Dusting With Remote-Controlled Helicopters 141
2.3.8 Distributed Robotics Garden 146
2.3.9 Cultibotics 147
2.3.10 Agricultural Robot Vision Pruning Systems 149
2.3.11 Robot Fish 149
2.3.12 Farm Technologies 150
2.3.13 Golf Courses Robotic Mowing 150
2.3.14 Agricultural Self Driving Tractor Robot Market Forecasts 151
2.3.15 Agricultural Robotics Key Economic Enablers 153
2.3.16 Agricultural Cow Milking Robot Market Shares and Market Forecasts 156
2.3.17 Lely Astronaut Milking Robots 157
2.3.18 Agricultural Irrigation Robots Market Forecasts 159
2.4 Agricultural and Weather IoT 161
2.4.1 Agricultural Internet of Things (IoT) 162
2.4.2 Agriculture IoT Food Production Increases 164
2.4.3 Agriculture IoT: Global Shift to Use of Sensors 165
2.4.4 Agriculture Internet of Things: Venture Investment 166
2.4.5 Agriculture Internet of Things (IoT) Technology 167
2.4.6 IoT Crop Water Management 168
2.4.7 Precision Agriculture 169
2.4.8 Agricultural Drone Sensors 169
2.4.9 Integrated Pest Management or Control (IPM/C) – 171
2.4.10 Food Production and Food Safety 173
2.4.11 Agriculture IoT Animal Monitoring 174
2.4.12 Agriculture Internet of Things (IoT) Applications 174
2.4.13 CLAAS IoT Equipment 175
2.5 Agricultural Robot Pricing 176
2.5.1 Harvest Automation 176
2.5.2 Shibuya Seiko Co. Strawberry Picking Robot 176
2.5.3 Wall-Ye V.I.N. Robot Functions 177
2.5.4 iRobot Automated Lawn Mowing 177
2.6 Agricultural Robots TCO / ROI 178
2.6.1 Cost Structures and Roles of Agricultural Robots 182
2.7 Agricultural Robot Regional Analysis 182
2.7.1 European Union Seventh Framework Program 184
2.7.2 Netherlands Agricultural Robots 185
2.7.3 Production of Agricultural Robotics in China 186
2.7.4 Chinese Agricultural Machinery 186
2.7.5 Japanese Robot Farm Vegetables 186
2.7.6 Agricultural Robots in Africa 187

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