Analysis of the Smart Agriculture Technology Market

Analysis of the Smart Agriculture Technology Market

Technology Integration in the Agriculture Ecosystem will Increase Production Yields and Drive the Technology Market

RELEASE DATE
04-Nov-2016
REGION
Global
Research Code: K146-01-00-00-00
SKU: FA00488-GL-MR_19149

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Description

The global agriculture sector has been encountering challenges in terms of a lack of adequate food for the growing malnourished population, the continued radical decrease in the areas of global arable land, and a dearth of technology that supports increased productivity and reduced labor dependency. The global smart agriculture technology market generated a revenue of $4.50 billion in 2015 and will reach $9.00 billion in 2020, growing at a compound annual growth rate of 14.8%. This study provides a detailed insight into the market by discussing drivers and restraints, competitive landscape, and key market, company, and technology trends.

Table of Contents

Key Findings

Market Engineering Measurements

CEO’s Perspective

Market Overview

Food and Agriculture Value Chain

Challenges in the Global Agriculture Sector

California Agriculture Scenario

Challenges Facing the Global Agriculture Sector

Transformation in the Agriculture Ecosystem

Market Engineering Measurements

Revenue Forecast

Market Share by Product Type

Enabling Agriculture Technologies

An Overview

Agriculture Drone’s Value Proposition

An Overview

Sensor Fusion’s Value PropositionFord

Smart Agriculture-enabling Technologies—Decision Support Matrix

Frost & Sullivan’s Growth Model

Smart Agriculture-enabling Technologies—Critical Success Factors

Legal Disclaimer

List of Figures
  • 1. Smart Agriculture Technology Market: Market Engineering Measurements, Global, 2015
  • 2. Smart Agriculture Technology Market: Food & Agriculture Bioeconomy and Generalized Value Chain, Global, 2015
List of Charts
  • 1. Smart Agriculture Technology Market: Market Engineering Measurements, Global, 2015
  • 2. Smart Agriculture Technology Market: Food & Agriculture Bioeconomy and Generalized Value Chain, Global, 2015
  • 3. Per Capita Food Consumption, 2015–2030
  • 4. Total Arable Land in Use, 2012–2030
  • 5. Per Capita Growth in Food Consumption
  • 6. Decline in Arable Land
  • 7. Smart Agriculture Technology Market: Country Comparison of Yields and Agricultural Output of Rice, Global, 2012
  • 8. Smart Agriculture Technology Market: Agricultural Value Added (Productivity) per Worker, Global, 2012
  • 9. Smart Agriculture Technology Market: Transformation in the Agriculture Ecosystem, Global, 2015
  • 10. Smart Agriculture Technology Market: Revenue Forecast, Global, 2013–2020
  • 11. Smart Agriculture Technology Market: Market Share by Product Type, Global, 2015
Related Research
The global agriculture sector has been encountering challenges in terms of a lack of adequate food for the growing malnourished population, the continued radical decrease in the areas of global arable land, and a dearth of technology that supports increased productivity and reduced labor dependency. The global smart agriculture technology market generated a revenue of $4.50 billion in 2015 and will reach $9.00 billion in 2020, growing at a compound annual growth rate of 14.8%. This study provides a detailed insight into the market by discussing drivers and restraints, competitive landscape, and key market, company, and technology trends.
More Information
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Table of Contents | Executive Summary~ || Key Findings~ || Market Engineering Measurements~ || CEO’s Perspective~ | Market Overview and Definitions~ || Market Overview~ || Food and Agriculture Value Chain~ | Challenges in the Global Agriculture Sector~ || Challenges in the Global Agriculture Sector~ || California Agriculture Scenario~ || Challenges Facing the Global Agriculture Sector~ | Mega Trends in the Smart Agriculture Technology Market~ || Transformation in the Agriculture Ecosystem~ | Global Smart Agriculture Technology Market~ || Market Engineering Measurements~ || Revenue Forecast~ || Market Share by Product Type~ || Enabling Agriculture Technologies~ | Enabling Smart Agriculture Technologies—Agriculture Drones~ || An Overview~ || Agriculture Drone’s Value Proposition~ | Enabling Smart Agriculture Technologies—Sensor Fusion~ || An Overview~ || Sensor Fusion’s Value PropositionFord~ | Enabling Smart Agriculture Technologies—HIS~ | Enabling Smart Agriculture Technologies—Autonomous Farming~ | The Last Word~ || Smart Agriculture-enabling Technologies—Decision Support Matrix~ || Frost & Sullivan’s Growth Model~ || Smart Agriculture-enabling Technologies—Critical Success Factors~ || Legal Disclaimer~ | The Frost & Sullivan Story~
List of Charts and Figures 1. Smart Agriculture Technology Market: Market Engineering Measurements, Global, 2015~ 2. Smart Agriculture Technology Market: Food & Agriculture Bioeconomy and Generalized Value Chain, Global, 2015~| 1. Smart Agriculture Technology Market: Market Engineering Measurements, Global, 2015~ 2. Smart Agriculture Technology Market: Food & Agriculture Bioeconomy and Generalized Value Chain, Global, 2015~ 3. Per Capita Food Consumption, 2015–2030~ 4. Total Arable Land in Use, 2012–2030~ 5. Per Capita Growth in Food Consumption~ 6. Decline in Arable Land~ 7. Smart Agriculture Technology Market: Country Comparison of Yields and Agricultural Output of Rice, Global, 2012~ 8. Smart Agriculture Technology Market: Agricultural Value Added (Productivity) per Worker, Global, 2012 ~ 9. Smart Agriculture Technology Market: Transformation in the Agriculture Ecosystem, Global, 2015~ 10. Smart Agriculture Technology Market: Revenue Forecast, Global, 2013–2020~ 11. Smart Agriculture Technology Market: Market Share by Product Type, Global, 2015~
Author Arun Ramesh
Industries Agriculture and Nutrition
WIP Number K146-01-00-00-00
Is Prebook No