Short answer

Incorporate IoT sensors and data analytics into the design of protected agriculture systems to enable real-time monitoring and automated adjustments of environmental parameters.

Field
Innovation & Design
Source
Sensors (2019)
Method
Systematic Literature Review
Evidence
Strong effect

The strategic application of Internet of Things (IoT) technologies in protected agriculture environments can significantly optimize environmental controls, leading to improved crop yields and more efficient resource utilization. This innovation & design research insight is drawn from a 2019 study published in Sensors. Using Systematic literature review, researchers explored how this design variable affects real-world outcomes. The key design takeaway: Incorporate IoT sensors and data analytics into the design of protected agriculture systems to enable real-time monitoring and automated adjustments of environmental parameters.

Study
Innovation & DesignHigh ImpactStrong effect

IoT integration in protected agriculture enhances crop yield and resource efficiency

The strategic application of Internet of Things (IoT) technologies in protected agriculture environments can significantly optimize environmental controls, leading to improved crop yields and more efficient resource utilization.

Sensors · 2019

01

Key Findings

  • 01IoT offers broad application prospects in protected agriculture.
  • 02Key application domains include plant management, animal farming, and product traceability.
  • 03Challenges and future research directions were identified.
02

Application

Design takeaway

Incorporate IoT sensors and data analytics into the design of protected agriculture systems to enable real-time monitoring and automated adjustments of environmental parameters.

How to apply

When designing systems for controlled environments, consider integrating a network of sensors (temperature, humidity, light, CO2) connected via an IoT platform to provide actionable data for environmental management.

Project actions

  • 01Focus on a specific aspect of protected agriculture, such as climate control or irrigation.
  • 02Research existing IoT platforms and sensor technologies suitable for agricultural applications.
03

Method & Evidence

AimTo systematically review and analyze the state-of-the-art applications of IoT in protected agriculture, identifying key technologies, system structures, and future research directions.
MethodSystematic Literature Review
ProcedureA comprehensive review of IoT research and deployments in protected agriculture over the past 10 years was conducted, with selected references categorized into plant management, animal farming, and supply chain traceability domains.
ContextProtected Agriculture (e.g., greenhouses, vertical farms)

Variables

IV["Implementation of IoT technologies (e.g., sensor networks, data analytics platforms)","Environmental control strategies"]
DV["Crop yield","Resource utilization (water, energy)","Environmental parameter stability","Product traceability"]
CV["Type of crop","Size and type of protected environment","External weather conditions"]
04

Strengths & Limitations

Strengths

  • +Comprehensive review of a decade of research.
  • +Categorization of applications into distinct domains.

Limitations

The cost of implementing a full IoT system can be a barrier for smaller operations.

Reliability & validity

The reliability of the findings is supported by a systematic review methodology. Validity is enhanced by covering a decade of research across multiple application domains, though it is limited by the scope of published literature.

Think critically

How can the data generated by IoT systems in protected agriculture be effectively translated into actionable insights for farmers, especially those with limited technical expertise?

05

Design Principles

"Leverage data-driven insights from integrated sensor networks to optimize environmental conditions for enhanced agricultural productivity and resource efficiency."

Understanding the current landscape of IoT in protected agriculture allows designers and engineers to identify opportunities for developing more sophisticated and responsive environmental management systems. This can lead to more sustainable and productive agricultural practices.

06

What This Means for Your Design

Using smart sensors and the internet (IoT) in places like greenhouses can help grow plants better and use less water and energy.

How to use in your project

  • 1.Use this review to justify the need for an IoT-based solution in your design project.
  • 2.Cite the identified application domains to support your project's scope.
07

Add to My Project

08

Quick Cite

Paragraph starter

The integration of Internet of Things (IoT) technologies into protected agriculture presents a significant opportunity to enhance crop management and resource efficiency, as evidenced by a systematic review of current research. This approach allows for real-time monitoring and automated control of environmental factors such as temperature, humidity, and light, leading to optimized growing conditions and potentially increased yields.

09

Source

Sensors

State-of-the-Art Internet of Things in Protected Agriculture

journal · 2019

View source

Questions About This Research

What does the research say about iot integration in protected agriculture enhances crop yield and resource efficiency?
Incorporate IoT sensors and data analytics into the design of protected agriculture systems to enable real-time monitoring and automated adjustments of environmental parameters. Evidence: Sensors (2019).
Why does "IoT integration in protected agriculture enhances crop yield and resource efficiency" matter for design?
Understanding the current landscape of IoT in protected agriculture allows designers and engineers to identify opportunities for developing more sophisticated and responsive environmental management systems. This can lead to more sustainable and productive agricultural practices.
How can designers apply this research?
Incorporate IoT sensors and data analytics into the design of protected agriculture systems to enable real-time monitoring and automated adjustments of environmental parameters.
What were the main findings?
IoT offers broad application prospects in protected agriculture.. Key application domains include plant management, animal farming, and product traceability.. Challenges and future research directions were identified.
What research method was used?
Systematic Literature Review.
How strong is the evidence?
Evidence strength is rated Strong effect, based on a 2019 journal from Sensors.
What should I do differently in my next project?
When designing systems for controlled environments, consider integrating a network of sensors (temperature, humidity, light, CO2) connected via an IoT platform to provide actionable data for environmental management.
What are the limitations?
The review is based on published literature, which may not capture all real-world deployments or emerging technologies.