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ENER-i® Energy Intelligence Software

De-risk the future state of your grid without changing your grid planning processes, workflows, or software. With ENER-i, utilities can conduct more advanced scenario modeling, use fewer engineering hours, and collaborate around intuitive analytics to make better informed investment decisions.

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Distribution Design

EPE develops solutions that not only meet current demand but also anticipate future growth and seamless renewable integration. By leveraging advanced technology, strategic planning, and deep industry expertise, we enhance resilience and adaptability, ensuring your infrastructure evolves with energy demands and remains future-ready.

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Electrification

Utilities are navigating a rapidly evolving energy ecosystem driven by new customer technologies that are reshaping grid behaviors. Distributed energy resources (DERs), bidirectional energy flow, nuclear and hydrogen, and the rise of AI data centers are challenging traditional grid management. EPE empowers utilities to optimize grid operations and adapt to the dynamic shifts within the industry.

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Grid Modernization

Grid modernization is driven by the rise of distributed energy resources (DERs), electrification, and the broader energy transition. At the same time, resiliency is a key focus and technology is evolving rapidly. EPE provides a range of solutions to support grid modernization and help utilities transition to a more resilient and adaptive network.

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Transmission Planning and Operations

The rapid integration of renewables into aging infrastructure is colliding with new demands—green hydrogen, largescale electrification, and energy-intensive sectors like AI data centers and cryptocurrency mining. To stay ahead in a rapidly evolving energy landscape, transmission planners and operators must accelerate innovation and action. EPE studies both people and systems, collaborating to identify limitations and designing execution-focused solutions to help navigate future grid challenges with confidence.

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EMT Simulation Studies

As the power system continues to integrate higher levels of Inverter Based Resources (IBRs), the traditional root mean square (RMS) and positive sequence-based analyses are often unable to fully capture the complex subsynchronous behavior of these devices. Our EMT studies offer high-fidelity analysis to support the safe integration of IBRs, large loads, high-voltage direct current (HVDC) systems, and other advanced technologies.

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