精密畜産農業(PLF)の世界市場分析及び予測(2019年-2024年)

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1 Introduction (Page No. – 16)
1.1 Study Objectives
1.2 Definition
1.3 Study Scope
1.3.1 Markets Covered
1.3.2 Geographical Scope
1.3.3 Years Considered
1.4 Currency
1.5 Limitations
1.6 Stakeholders
2 Research Methodology (Page No. – 20)
2.1 Research Data
2.1.1 Secondary Data
2.1.1.1 Major Secondary Sources
2.1.1.2 Secondary Sources
2.1.2 Primary Data
2.1.2.1 Primary Interviews With Experts
2.1.2.2 Breakdown of Primaries
2.1.2.3 Key Data From Primary Sources
2.1.3 Secondary and Primary Research
2.1.3.1 Key Industry Insights
2.2 Market Size Estimation
2.2.1 Bottom-Up Approach
2.2.1.1 Approach for Capturing Market Size By Bottom-Up Analysis (Demand Side)
2.2.2 Top-Down Approach
2.2.2.1 Approach for Capturing Market Size By Top-Down Analysis (Supply Side)
2.3 Market Breakdown and Data Triangulation
2.4 Research Assumptions
2.4.1 Major Assumptions Considered While Estimating Global Precision Livestock Farming Market
3 Executive Summary (Page No. – 31)
4 Premium Insights (Page No. – 36)
4.1 Attractive Opportunities in Precision Livestock Farming Market
4.2 Market in Europe, By Technology and Country
4.3 Market, By Application
4.4 Market, By Offering
4.5 Geographic Analysis of Market
5 Market Overview (Page No. – 40)
5.1 Introduction
5.2 Market Dynamics
5.2.1 Drivers
5.2.1.1 Increasing Adoption of IoT and AI in Dairy Farms
5.2.1.2 Increasing Need for Optimization of Dairy Herds
5.2.1.3 Growing Demand for Protein, Food Traceability, and Food Safety
5.2.1.4 Substantial Cost-Saving Associated With Livestock Monitoring Management
5.2.2 Restraints
5.2.2.1 High Initial Investment
5.2.2.2 Lack of Technological Awareness Among Dairy Farmers
5.2.3 Opportunities
5.2.3.1 Increasing Adoption of Livestock Monitoring Technology in Developing Countries
5.2.3.2 Increasing Number of Dairy Farms
5.2.4 Challenges
5.2.4.1 Stringent Regulations and High Trade Barriers
5.2.4.2 Environmental Concern and Global Warming
6 Industry Trends (Page No. – 47)
6.1 Introduction
6.2 Value Chain Analysis
6.2.1 Major Market Players in Market
6.3 Industry Trends
6.3.1 Advent of AI and Blockchain in Livestock to Influence Market Expansion
6.3.2 Milking Robots and Feeding Robots to Mitigate Labor Shortage
7 Market, By Offering (Page No. – 50)
7.1 Introduction
7.2 Hardware
7.2.1 Robotics Hardware
7.2.1.1 Increasing Herd Size of Dairy Farms and Rising Labor Costs Expected to Propel the Growth of Robotics Hardware Component
7.2.2 RFID Tags & Readers
7.2.2.1 Increasing Adoption of Low Frequency RFID Tags for Identification & Tracking
7.2.3 Sensors
7.2.3.1 Temperature Sensor
7.2.3.2 Accelerometer Sensor
7.2.3.3 Motion Sensor
7.2.3.4 Environmental Humidity Sensor
7.2.3.5 Others
7.2.4 Cameras
7.2.4.1 Increasing Awareness Among Ranchers in Remote Monitoring of Livestock Expected to Propel the Growth of Cameras
7.2.5 GPS
7.2.5.1 Increasing Demand for Livestock Location Tracking is Major Factor Driving the Growth of GPS
7.2.6 Others
7.3 Software
7.3.1 On-Cloud
7.3.1.1 Rising Demand for Software-As-A-Solution (SaaS) Model in Market
7.3.2 On-Premise
7.3.2.1 Various Benefits Associated With on Promise Software to Propel the Adoption of This Segment
7.4 Services
7.4.1 System Integration & Deployment
7.4.2 Managed Service
7.4.3 Maintenance and Support
8 Market, By Technology (Page No. – 67)
8.1 Introduction
8.2 Milking Robots
8.2.1 Single-Stall Unit
8.2.1.1 Increasing Adoption of Single–Stall Milking Unit on Small to Medium Sized Dairy Farms
8.2.2 Multi Stall Unit
8.2.2.1 Increasing Demand for Multi Stall Unit From Dairy Farms With Herd Size 100 to 1,000
8.2.3 Automated Milking Rotary
8.2.3.1 Consolidation of Dairy Farms in Developed Region to Boost the Growth of Automated Milking Rotary
8.3 Precision Feeding Systems
8.3.1 Increasing Adoption of Feeding Robots to Mitigate Labor Shortage Issue Expected to Propel the Market Growth
8.4 Livestock Identification & Tracking
8.4.1 Increasing Adoption of Active RFID Tags on Medium to Large Livestock Farms to Accelerate Demand for Livestock Identigication & Tracking Devices
9 Market, By Application (Page No. – 80)
9.1 Introduction
9.2 Milk Harvesting
9.2.1 Rising Demand for Milking Robots on Dairy Farms to Propel the Growth of Milk Harvesting Application
9.3 Feeding Management
9.3.1 Increasing Awareness Among Dairy Farm Owners for Accurate Diet Formulation
9.4 Livestock Behavior and Health Monitoring
9.4.1 Increasing Interest Among Ranchers and Dairy Farm Owners to Track Heat Detection and Early Detection of Diseases
9.5 Other Applications
10 Geographic Analysis (Page No. – 89)
10.1 Introduction
10.2 Americas
10.2.1 North America
10.2.1.1 US
10.2.1.1.1 The US Accounted for the Largest Share of Market in North America
10.2.1.2 Canada
10.2.1.2.1 High Dairy Farm Operational Cost and Unavailability of Skilled Farmers to Drive Market in Canada
10.2.1.3 Mexico
10.2.1.3.1 Market in Mexico to Witness Highest CAGR in North America
10.2.2 South America
10.2.2.1 Brazil
10.2.2.1.1 Brazil Accounted for the Largest Share of Market in South America
10.2.2.2 Argentina
10.2.2.2.1 Market in Argentina to Witness Highest Growth in South America
10.2.2.3 Rest of South America
10.3 Europe
10.3.1 Germany
10.3.1.1 Germany to Hold Largest Share of Market in Europe During the Forecast Period
10.3.2 Netherland
10.3.2.1 Increasing Herd Size and Rising Labor Cost to Propel Demand for Market in Netherland
10.3.3 UK
10.3.3.1 UK to Witness an Increasing Adoption of Precision Livestock Farming Technologies Between 2019 and 2024
10.3.4 France
10.3.4.1 Increasing Adoption of Precision Livestock Farming Technology to Boost Market Demand in France
10.3.5 Denmark
10.3.5.1 High Adoption of Milking Robots in Denmark
10.3.6 Sweden
10.3.6.1 Higher Adoption of Livestock Technology in Sweden
10.3.7 Rest of Europe
10.4 Asia Pacific
10.4.1 China
10.4.1.1 China Accounted for Largest Market Share in Asia Pacific
10.4.2 Australia & New Zealand
10.4.2.1 Australia & New Zealand Accounted for Second Largest Market Share in Asia Pacific
10.4.3 Japan
10.4.3.1 Aging Workforce and Increasing Government Incentives to Boost Demand for Milking Robots and Feeding Robots in Japan
10.4.4 India
10.4.4.1 Market in India Expected to Witness Stronger Growth Owing to Government Initiatives and Focus on Increasing Dairy Productivity
10.4.5 Rest of Asia Pacific
10.5 Rest of World
10.5.1 Africa
10.5.1.1 Weak Exchange Rate in African Countries and Low-Profit Margins are Major Challenges
10.5.2 Middle East
10.5.2.1 Increasing R&D Investments to Boost Adoption of Automated Milking System and Feeding Robots
10.5.3 Others
11 Competitive Landscape (Page No. – 114)
11.1 Introduction
11.2 Market Ranking Analysis for the Precision Livestock Farming Market, 2018
11.3 Competitive Leadership Mapping, 2018
11.3.1 Visionary Leaders
11.3.2 Dynamic Differentiators
11.3.3 Innovators
11.3.4 Emerging Companies
11.4 Strength of Product Portfolio (25 Players)
11.5 Business Strategies Excellence (25 Players)
11.6 Competitive Situation and Trends
11.6.1 New Product Launches
11.6.2 Agreements, Partnerships, and Contracts
11.6.3 Mergers and Acquisitions
12 Company Profiles (Page No. – 123)
12.1 Key Players
(Business Overview, Products Offered, Recent Developments, MnM View, SWOT Analysis)*
12.1.1 Delaval (Subsidiary of Tetra Laval International, S.A.)
12.1.2 Antelliq (Subsidiary of Merck & Co., Inc.)
12.1.3 GEA Farm Technology (GEA Group AG)
12.1.4 Afimilk Ltd.
12.1.5 Boumatic, LLC
12.1.6 Lely International N.V.
12.1.7 Dairymaster
12.1.8 Fancom B.V. (Subsidiary of Ctb International Corp.)
12.1.9 Fullwood Packo. Ltd
12.1.10 Waikato Milking Systems Lp
*Business Overview, Products Offered, Recent Developments, MnM View, SWOT Analysis Might Not Be Captured in Case of Unlisted Companies.
12.2 Other Players
12.2.1 Hokofarm Group
12.2.2 Trioliet B.V.
12.2.3 VDL Agrotech (VDL Groep)
12.2.4 Icerobotics
12.2.5 HID Global
12.3 Key Innovator
12.3.1 Cainthus
12.3.2 Connecterra
12.3.3 MI Robot Ltd.
12.3.4 Farm Control
12.3.5 Aleis Pty Ltd.
12.3.6 Moocall
12.3.7 Cowlar
13 Appendix (Page No. – 155)
13.1 Insights From Industry Experts
13.3 Knowledge Store: Marketsandmarkets’ Subscription Portal
13.4 Available Customization
13.5 Related Reports
13.6 Author Details




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