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  • Home
  • Start Here! 
    • Mission Statement
    • The Team
    • Discover the ACE-Model
  • ACE-Box: Launch: 21/01/26 
    • Start Here!
    • 1. Comprehend
    • 2. Operate
    • 3. Refine
    • 4. Engineer
  • ACE-Apply
  • Contact
  • …  
    • Home
    • Start Here! 
      • Mission Statement
      • The Team
      • Discover the ACE-Model
    • ACE-Box: Launch: 21/01/26 
      • Start Here!
      • 1. Comprehend
      • 2. Operate
      • 3. Refine
      • 4. Engineer
    • ACE-Apply
    • Contact

  • Home
  • Start Here! 
    • Mission Statement
    • The Team
    • Discover the ACE-Model
  • ACE-Box: Launch: 21/01/26 
    • Start Here!
    • 1. Comprehend
    • 2. Operate
    • 3. Refine
    • 4. Engineer
  • ACE-Apply
  • Contact
  • …  
    • Home
    • Start Here! 
      • Mission Statement
      • The Team
      • Discover the ACE-Model
    • ACE-Box: Launch: 21/01/26 
      • Start Here!
      • 1. Comprehend
      • 2. Operate
      • 3. Refine
      • 4. Engineer
    • ACE-Apply
    • Contact
  • ACE-Box

    • ACE-Box is an open-access, portable tool kit enabling students and engineers to learn and apply automatic control engineering (ACE) without needing a full-scale laboratory.
    • ACE-Box comes in the followoing two forms (the two boxes should be used together to create control systems involving actuators):
      1. ACE-Box (Base and Sense): Focused on the fundamentals and also measurement
      2. ACE-Box (Actuate): Focused on actuators
    • It compactly packages all the required hardware, sensors and actuators so it can be set up on a desk or even at home.

    ACE-CORE+

    • The ACE-CORE+ provides a four-step learning methodology, with details given as follows:
      1. Comprehend: Learn what makes up acontrol system, and how each component plays a role in achieving control.
      2. Operate: Discover how to operate acontrol system, from understanding system requirements to testing and
        validation.
      3. Refine: Discover the process of setting a control system up to achieve a set of requirements.
      4. Engineer: Use mathematics to design control algorithms, from system requirements to testing and validation.
      5. +: Use mathematics to design advanced control algorithms (i.e., adaptive and predictive), from system requirements to testing and validation.

    Using ACE-Box and ACE-CORE+ will then enable you to move onto ACE-Apply (see below).

    Link to GitHub Page for ACE-Box Files (coming soon!)

    User Endorsement

    "ACE-Box provides an exceptional bridge between classroom learning and real-world control engineering practice. The platform is intuitive, easy to use, and highly flexible - enabling students and educators to explore complex control concepts with confidence. ACE-Box helps students move beyond theory, developing the hands-on skills and professional insight essential for modern engineering careers."
    Dr Ehsan Azadi, Cambridge Mechatronics, UK
Advancing control engineering education through global collaboration
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