Integrated technology for a greener economy.

IEACE works across the full path from scientific research and system design to technology transfer, field implementation and technical training.

From energy source to intelligent operation

Independent renewable-energy clusters

Independent renewable-energy clusters

Research, consult and design wind, solar and biogas clusters for farms, fisheries, isolated communities and renewable-powered charging infrastructure.

Automation, IoT & AI

Automation, IoT & AI

Design automated production lines and intelligent control systems for industry, agriculture, forestry and fisheries, from sensing to operational optimization.

Electric machinery & green transport

Electric machinery & green transport

Convert agricultural machinery and small vessels from petrol or diesel to electric drivetrains, supported by battery charging and monitoring systems.

Smart agriculture & microclimates

Smart agriculture & microclimates

Stabilize temperature, humidity and water pH; apply IoT, AI and UAV monitoring to irrigation, crop care, cultivation and processing.

Environment & climate resilience

Environment & climate resilience

Develop environmental-treatment solutions, circular-economy applications and AI/IoT control for flood discharge and drainage at irrigation and hydropower works.

Testing, transfer & capability building

Testing, transfer & capability building

Test and calibrate environmental-monitoring and measurement equipment, transfer technology, deliver technical training and organize scientific workshops and cooperation.

From research to field operation

Five connected stages bring research, engineering and knowledge transfer into one delivery process.

Structure 5 stages
Coordination One technical lead
  1. Research

    Define project needs, operating conditions and the core technical requirements.

    Output Research brief
  2. System design

    Develop the architecture, equipment sizing and system integration plan.

    Output Design package
  3. Prototype

    Build the prototype, test its functions and refine operating parameters.

    Output Technical prototype
  4. Field deployment

    Install, integrate and commission the solution in its operating environment.

    Output Operating system
  5. Training & transfer

    Transfer the operating, maintenance and technical capabilities to the project team.

    Output Transfer capability

Priority applied-research topics

The Institute's agenda connects renewable power, electrification and intelligent control to practical needs in agriculture, transport and water infrastructure.

See active projects
  1. Optimal control of isolated wind-solar hybrid systems

  2. Electric drivetrains for agricultural machinery

  3. AI-controlled driverless field machinery

  4. IoT/AI crop care and microclimate regulation

  5. Battery storage and renewable charging systems

  6. Flood regulation for irrigation and hydropower works