Inverter-based resources (IBR) design and integration
Accelerate the development, validation, compliance testing, and integration of inverter-based resources (IBRs) with OPAL-RT’s real-time simulation solutions. From solar and wind systems to energy storage and plant power controllers, our tools—ranging from Software-in-the-Loop (SIL) to Hardware-in-the-Loop (HIL) at both signal and power levels—feature advanced blackbox integration to ensure performance, reliability, and grid readiness across the entire energy value chain.
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They trust us
A shifting landscape
Accurate and reliable simulation for IBRs for inverter-based resources
The power system is evolving rapidly to meet growing demand and the accelerating integration of renewable energy. With the increasing penetration of inverter-based resources (IBRs), robust testing has become essential to ensure grid stability, reliability, and compliance with evolving standards. As the grid becomes more dynamic and distributed, simulation and validation play a critical role in supporting innovation while maintaining operational integrity.
OPAL-RT enables full-cycle validation of IBRs through comprehensive real-time simulation workflows—spanning software-in-the-loop (SIL), hardware-in-the-loop (HIL), and power hardware-in-the-loop (PHIL). Our solutions empower OEMs, integrators, consulting firms, and system operators to test, benchmark, and certify solar PV, battery energy storage systems (BESS), wind power, and plant power controllers (PPCs) for performance, reliability, and grid code compliance.
Expertise you can rely on
A proven track record in power systems simulation
With decades of collaboration with industry leaders and top research institutions, OPAL-RT brings proven expertise in real-time power systems and power electronics simulation. Our trusted solutions drive innovation in inverter-based resource applications across the entire V-model lifecycle.
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Accelerate IBR development
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Improve grid stability & reliability
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Perform high-fidelity device testing
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Flexible model conversion
Webinar
Industry insights: The role of HIL in IBR development and integration
Explore how Sungrow in partnership with Keliang leverage our hardware-in-the-loop (HIL) simulation tools to develop and integrate inverter-based resources, ensuring secure, stable, and high-performance solar and energy storage systems.
Blackbox integration
Blackbox model integration workflows for real-time simulation
Seamlessly test vendor controllers or inverters with full fidelity while keeping IP secure using our interface. Ideal for manufacturers, integrators, and system operators to validate, simulate, and de-risk inverter-based control projects. Watch our video to get started with your blackbox model integration in HYPERSIM.
Expert Consulting Services
Tailored support for your projects
OPAL-RT consulting services provide expert guidance in:
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Custom model development
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Simulation workflow design
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Compliance verification and grid code testing
Partner with OPAL-RT consultants to accelerate your IBR projects

Applications
Inverter-based resource testing
OPAL-RT supports practical, end-to-end testing for inverter-based resources. OEMs, developers, and system operators can simulate real-world scenarios to ensure performance, reliability, and compliance:
Unit-level inverter validation
Validate your PV, BESS, or inverter controllers with our real-time solutions — simulate realistic grid conditions at sub-microsecond timesteps for unmatched performance insight.
Plant Power Controller (PPC) validation
Validate and benchmark PPC performance to ensure seamless coordination across multiple inverters and energy storage systems.
Grid code compliance verification
Perform real-time studies to validate controller behavior and ensure compliance with regional and international standards such as IEEE 1547, ENTSO-E, and UL 1741.
Blackbox model integration
Seamlessly integrate and test vendor-supplied controllers or inverters using our secure interface—maintaining full fidelity while keeping your intellectual property fully protected.
EXata CPS has been specifically designed for real-time performance to allow studies of cyberattacks on power systems through the Communication Network layer of any size and connecting to any number of equipment for HIL and PHIL simulations. This is a discrete event simulation toolkit that considers all the inherent physics-based properties that will affect how the network (either wired or wireless) behaves.





