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== 1. Project Title ==
== Project Title ==
'''Aerodrive: Arduino Fan Car'''
'''Aerodrive: Arduino Fan Car'''


== 2. Purpose ==
== Purpose ==
Design and build a functional car prototype powered by computer fans that would be controlled by Arduino microcontroller. Aims to demonstrate alternative propulsion methods, utilizing embedded programming and circuit design skills while applying project management principles.
Design and build a functional car prototype powered by computer fans that would be controlled by Arduino microcontroller. Aims to demonstrate alternative propulsion methods, utilizing embedded programming and circuit design skills while applying project management principles.


== 3. Cost Estimate ==
== Cost Estimate ==
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== 3. SMART goals ==
== SMART goals ==
* Specific: Design and construct a fan powered car with an Arduino Starter Kit.
* Specific: Design and construct a fan powered car with an Arduino Starter Kit.
* Measurable: A prototype that move forward, adjust direction, and speed reliably for at least 5 minutes without failure.
* Measurable: A prototype that move forward, adjust direction, and speed reliably for at least 5 minutes without failure.
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* Time-bound: Car that reliably run for 5 minutes without overheating or malfunctioning.
* Time-bound: Car that reliably run for 5 minutes without overheating or malfunctioning.


 
== High Level Requirements ==
== 4. High Level Requirements ==


* Chassis to support fans and electronics.
* Chassis to support fans and electronics.
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* Documentation to replicate prototype.
* Documentation to replicate prototype.


== 5. Deliverables ==
== Assumptions, Constraints, Dependencies ==
* Functional prototype of the fan-powered Arduino car.
* Arduino sketch (code) for fan control.
* Electrical schematic and wiring diagram.
* Bill of materials (components list and costs).
* Final project report (design rationale, challenges, results).
 
 
 


Assumptions:
* Access to Arduino Starter kit.
* Team members having basic programming skills and electronics knowledge.
* Sufficient thrust coming from fans.
Constraints:
* Components cannot exceed $90.
* Fan propulsions base.
* Small and lightweight prototype.
Dependencies:
* Programming must be finalized and tested before full system testing.
* The power system must be verified to supply sufficient voltage and current for both Arduino and fans.
* Documentation depends on completing a successful prototype.


== 9. Risks and Mitigation ==
== High Level Risk ==
{| class="wikitable" style="width:100%; text-align:center;"
{| class="wikitable" style="width:100%; text-align:center;"
! Risk !! Likelihood !! Impact !! Mitigation Strategy
! Risk !! Impact !! Probability !! Mitigation Strategy
|-
| Fans produce insufficient thrust || Medium || High || Test multiple fan types, adjust angle, reduce car weight
|-
| Power supply inadequate || Medium || Medium || Use separate supplies for fans and Arduino
|-
|-
| Overheating or overcurrent || Low || Medium || Use MOSFETs and fuses for protection
| Insufficient trust from fans || High|| Medium|| Test multiple fan types, adjust angle, reduce car weight
|-
|-
| Arduino code instability || Medium || Medium || Incremental testing and debugging
| Inadequate power supply || Medium || Medium || Use a separate power supply for fans and Arduino
|-
|-
| Mechanical imbalance || Medium || Medium || Balance fan mounts and ensure stable chassis
| Instability in Arduino code || High || Medium || Incremental testing and debugging
|}
|}


== Success Criteria ==
== Time Estimate ==
* The car moves forward under fan propulsion when powered and controlled by Arduino.
* Total Duration: 5 weeks
** The direction and/or speed can be adjusted using Arduino code or input controls.
** Week 1: Project initiation.
* The system runs reliably for at least 5 minutes without overheating or malfunctioning.
** Week 2: Electronic setup.
* Documentation and code are complete and replicable.
** Week 3: Chassis construction.
** Week 4: Programming and Integration.
** Week 5: Testing and documentation.


== Stakeholders ==
== Stakeholders ==

Latest revision as of 06:59, 2 November 2025

Project Title[edit]

Aerodrive: Arduino Fan Car

Purpose[edit]

Design and build a functional car prototype powered by computer fans that would be controlled by Arduino microcontroller. Aims to demonstrate alternative propulsion methods, utilizing embedded programming and circuit design skills while applying project management principles.

Cost Estimate[edit]

The total estimated cost for this project is $90.
Item Description Estimated Cost
Arduino Uno Microcontroller board $25
Computer fans (x4) Propulsion units $20
Chassis materials Base, wheels, frame $15
Power supply Batteries, connectors $10
Electronic components Wires, resistors, MOSFETs $10
Miscellaneous Tools, adhesives, etc. $10
Total Estimated Cost $90

SMART goals[edit]

  • Specific: Design and construct a fan powered car with an Arduino Starter Kit.
  • Measurable: A prototype that move forward, adjust direction, and speed reliably for at least 5 minutes without failure.
  • Achievable: Utilizing Arduino kit, four fans, and a lightweight chassis to complete a working prototype.
  • Relevant: Learning and demonstrates system programming, electronics integration, propulsion, and design.
  • Time-bound: Car that reliably run for 5 minutes without overheating or malfunctioning.

High Level Requirements[edit]

  • Chassis to support fans and electronics.
  • Arduino to control directions and speed.
  • Battery packs for power management Arduino and fans.
  • Control system (wireless or onboard).
  • Documentation to replicate prototype.

Assumptions, Constraints, Dependencies[edit]

Assumptions:

  • Access to Arduino Starter kit.
  • Team members having basic programming skills and electronics knowledge.
  • Sufficient thrust coming from fans.

Constraints:

  • Components cannot exceed $90.
  • Fan propulsions base.
  • Small and lightweight prototype.

Dependencies:

  • Programming must be finalized and tested before full system testing.
  • The power system must be verified to supply sufficient voltage and current for both Arduino and fans.
  • Documentation depends on completing a successful prototype.

High Level Risk[edit]

Risk Impact Probability Mitigation Strategy
Insufficient trust from fans High Medium Test multiple fan types, adjust angle, reduce car weight
Inadequate power supply Medium Medium Use a separate power supply for fans and Arduino
Instability in Arduino code High Medium Incremental testing and debugging

Time Estimate[edit]

  • Total Duration: 5 weeks
    • Week 1: Project initiation.
    • Week 2: Electronic setup.
    • Week 3: Chassis construction.
    • Week 4: Programming and Integration.
    • Week 5: Testing and documentation.

Stakeholders[edit]

Role Name Responsibilities
Project Sponsor Professor Provides funding, ultimate decision authority
Project Manager Jande Lopez Overall coordination, timeline management
Electronics Engineer Gianlucca Pirovano and Elio Jose Mendez Brancho Circuit design, Arduino integration
Mechanical Engineer Elio Jose Mendez Bracho and Jande Lopez Chassis and propulsion design
Programmer Mark Fernandez and Gianlucca Pirovano Arduino code development
Tester / Documenter Mark Fernandez, Gianlucca Pirovano, Elio Jose Mendez Brancho, and Jande Lopez Prototype testing, results documentation
Users / Reviewers Classmates Recipient of functional prototype


Project Milestones[edit]

Milestones Description
Project initiation Define concept, gather materials
Chassis construction Build car frame and mount fans
Electronics setup Connect fans, Arduino, and power system
Programming phase Develop and test Arduino control code
Testing phase Conduct movement and control tests
Final documentation Compile report and present results


Approval Signatures, Project Manager and Business Owner[edit]

Name Title Signature Date
Professor Victor Arenas Project Sponsor
Jande Lopez Project Manager