Abstract
This chapter highlights the critical need for advanced modeling of data centers due to their rapidly increasing energy consumption and impact on grid reliability. Driven by the demand for AI applications, data centers are projected to consume a significant portion of US energy by 2028, putting stress on an already challenged power grid. The chapter emphasizes the importance of "fast" time-scale models to understand the dynamic interactions between data centers and the grid, especially given the rapid power fluctuations of AI workloads. It outlines a modeling framework that includes both offline and real-time EMT domain simulations, detailing the necessary representations for various components like utility interfaces, transformers, IT loads, UPS, cooling loads, Battery Energy Storage Systems (BESS), generators, protection systems, and higher-level control systems. While standard simulation tools like PSCAD offer basic models, custom development is often required to accurately capture the unique and fast-changing behaviors of modern data centers. The chapter also discusses key metrics and test cases for validating these models, focusing on transient load responses, protection relay coordination, and demand flexibility. Finally, it addresses the challenges of modeling large-scale data centers, such as computational complexity and the trade-off between model fidelity and practicality, suggesting hybrid modeling approaches as a solution. The overarching goal is to create a robust framework that helps assess data center impacts on grid stability, identify vulnerabilities, and inform the development of standards for reliable integration of these large loads into the bulk power system.
| Original language | American English |
|---|---|
| Number of pages | 35 |
| DOIs | |
| State | Published - 2026 |
NLR Publication Number
- NLR/TP-2C00-97716
Keywords
- ancillary services
- automatic transfer switches
- backup generation
- battery energy storage system
- battery management system
- building management system
- data center modeling
- demand flexibility
- electromagnetic transients domain modeling
- energy management system
- fast frequency response
- grid impedance
- harmonics
- HVAC
- hyperscaler
- in rush current
- information technology load
- large load modeling
- microgrid controller
- over frequency
- over voltage
- power distribution unit
- protection system
- static transfer switches
- supervisory control and data acquisition
- transfer switch
- under frequency
- under voltage
- universal power supply
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