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 Duration 21 hours

Course Outline

Introduction to TinyML in Agriculture

  • Exploring the capabilities of TinyML
  • Identifying key agricultural use cases
  • Evaluating the constraints and benefits of on-device intelligence

Hardware and Sensor Ecosystem

  • Microcontrollers for edge AI applications
  • Overview of common agricultural sensors
  • Considering energy consumption and connectivity

Data Collection and Preprocessing

  • Methods for field data acquisition
  • Cleaning sensor and environmental datasets
  • Extracting features suitable for edge models

Building TinyML Models

  • Selecting models for constrained devices
  • Establishing training workflows and validation processes
  • Optimizing model size and efficiency

Deploying Models to Edge Devices

  • Utilizing TensorFlow Lite for microcontrollers
  • Flashing and executing models on hardware
  • Resolving common deployment issues

Smart Agriculture Applications

  • Assessing crop health
  • Detecting pests and diseases
  • Controlling precision irrigation

IoT Integration and Automation

  • Linking edge AI with farm management platforms
  • Implementing event-driven automation
  • Establishing real-time monitoring workflows

Advanced Optimization Techniques

  • Applying quantization and pruning strategies
  • Implementing battery optimization approaches
  • Designing scalable architectures for large-scale deployments

Summary and Next Steps

Requirements

  • Working knowledge of IoT development workflows
  • Experience in handling sensor data
  • A solid grasp of embedded AI concepts

Target Audience

  • Agritech engineers
  • IoT developers
  • AI researchers

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