Electrical · Power Transmission & Distribution

Distribution Feeder Load Flow & Optimization

Intermediate 4 weeks 30-50 hours

Build a scaled distribution feeder on a breadboard with multiple tapped loads. Measure voltage drop along the feeder and test how conductor size (wire gauge) and load placement change losses.

Major

Electrical

Focus area

Power Transmission & Distribution

Total hours

30-50 hours

What you'll need

  • Arduino Mega 2560 R3 microcontroller board
  • INA219 DC current voltage power monitor sensor module 3 pack
  • hookup wire assortment kit 22 AWG solid core
  • high power resistor assortment kit
  • adjustable DC bench power supply 30V 10A variable
  • solderless breadboard 830 point pack
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Steps

  1. Design a scaled feeder with 3 or more resistor loads tapped along a length of wire.
  2. Build it on breadboards and power it from the bench supply.
  3. Place INA219 sensors at the source and at load points to measure voltage and current.
  4. Measure voltage drop and losses along the feeder at full load.
  5. Change wire gauge and load placement, then compare how losses and voltage drop change.
  6. Chart the results and document your recommendations for your portfolio.

What to photograph for your portfolio

  • Feeder breadboard
  • voltage-drop-along-line plots
  • wire gauge comparison
  • loss analysis

Resume bullet starters

Copy one, then swap in your own numbers.

  • Engineered a distribution feeder load flow & optimization using Distribution engineering, voltage drop measurement, Arduino

  • Applied circuit design to implement, test, and validate the analysis end-to-end

Skills you'll show off

Distribution engineeringvoltage drop measurementArduinocircuit design

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