HIL Protection Application –  System Overview

Real-time FPGA-based protection validation for modern power and control systems.

Introducing the HIL Protect Application

The HIL Protect Application is a specialized Hardware-in-the-Loop (HIL) protection testing platform designed to support real-time evaluation, monitoring, and analysis of relay protection systems. It enables engineers and researchers to interact directly with protection logic while it operates under realistic electrical conditions, providing a clear and accurate representation of how protection systems behave in real power networks.

Rather than acting as a simple configuration or control interface, the application functions as a live operational environment where protection decisions are continuously evaluated, visualized, and recorded. As input currents are processed, the application monitors their magnitude and duration in real time, automatically issuing a trip command whenever defined protection criteria are met. This behavior closely mirrors that of physical protection relays deployed in the field.

Protection Logic and Overcurrent Safety Mechanisms

Real-Time Monitoring, Logging, and Analysis

Key Use Cases of the Impedyme HIL Protection Application

Frequently Asked Questions

What is the primary purpose of the HIL Protection Application?
The HIL Protection Application is designed to validate protection algorithms in real time by emulating realistic fault conditions using Hardware-in-the-Loop testing, ensuring reliable and safe system behavior before deployment.
Why is FPGA-based real-time execution important in HIL testing?
FPGA processing guarantees deterministic, low-latency execution, allowing protection logic to respond accurately to fast-changing fault events that cannot be reliably tested using software-only simulations.
How does IGBT fault simulation benefit system testing?
IGBT fault simulation allows engineers to evaluate short-circuit tolerance and protection response timing without risking physical semiconductor damage.
Is the HIL Protection Application suitable for both industry and research use?
Absolutely—its deterministic behavior, repeatable testing environment, and advanced monitoring make it ideal for industrial validation, academic research, and training applications.
What signal analysis tools are available during monitoring?
The Monitoring tab provides real-time waveforms, trigger-based capture, and calculated metrics such as RMS, peak-to-peak, average value, and estimated frequency.

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