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Smart Sensors for Smart Grid Reliability.

Monica Alonso1, Hortensia Amaris1, Daniel Alcala2

  • 1Electrical Engineering Department, Universidad Carlos III de Madrid; 28911, Leganés, Madrid, Spain.

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A novel smart sensor enhances smart grid protection by enabling real-time coordinated adjustments. This intelligent electronic device (IED) significantly improves short-circuit fault detection compared to traditional methods.

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Area of Science:

  • Electrical Engineering
  • Power Systems
  • Smart Grid Technology

Background:

  • Smart grids require efficient monitoring for protection and energy efficiency.
  • Existing protection devices (analog electromechanical relays, IEDs) lack real-time coordination and adaptive settings.
  • Rapid short-circuit detection is crucial to minimize damage and ensure safety.

Purpose of the Study:

  • To develop a new smart sensor for smart grids.
  • To enable real-time, coordinated adjustment of sensor settings across the network.
  • To improve the speed and accuracy of short-circuit fault detection.

Main Methods:

  • Development of a novel smart sensor with dynamic adjustment capabilities.
  • Implementation of a coordinated protection scheme utilizing the smart sensors.
  • Testing the system on the IEEE 34-bus test system under various fault conditions and renewable energy integration.

Main Results:

  • The proposed smart sensor demonstrated significant improvements in short-circuit fault sensing.
  • Fault sensing was improved by up to 80% compared to analog electromechanical relays.
  • Fault sensing was improved by up to 64% compared to modern intelligent electronic devices (IEDs).

Conclusions:

  • The developed smart sensor and coordinated protection scheme effectively enhance smart grid fault detection.
  • Real-time adaptive settings and inter-sensor coordination are key to improving smart grid resilience.
  • The proposed solution offers a substantial advancement over existing protection technologies for smart grids.