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Main Authors: Abudyak, Yousef, Alizadeh, Mohsen, Sun, Wei
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2602.01013
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author Abudyak, Yousef
Alizadeh, Mohsen
Sun, Wei
author_facet Abudyak, Yousef
Alizadeh, Mohsen
Sun, Wei
contents The rapid growth of hyperscale data centers driven by Large Language Models and Artificial Intelligence workloads has introduced new challenges for power systems. These facilities experience abrupt power variations during model training and check-point-saving events, causing voltage deviations and frequency disturbances. Moreover, they operate as passive loads that draw power without offering any grid support. This paper presents an integrated architecture that combines Battery Energy Storage Systems (BESSs) within data centers using Grid-Forming inverters to provide active grid-support functions. Simulation results through MATLAB/Simulink demonstrate accurate power reference tracking under dynamic loading, with eight coordinated BESS units supplying instantaneous power during training and saving conditions. Under single-phase voltage depression near the data center bus, the BESS delivered reactive power support similar to a Static Synchronous Compensator. During grid disconnection, seamless islanded operation was achieved with stable voltage, frequency, and continuous power delivery at the data center bus.
format Preprint
id arxiv_https___arxiv_org_abs_2602_01013
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Mitigating Data Centers Load Risks and Enabling Grid Support Functions through Grid-Forming Control
Abudyak, Yousef
Alizadeh, Mohsen
Sun, Wei
Systems and Control
The rapid growth of hyperscale data centers driven by Large Language Models and Artificial Intelligence workloads has introduced new challenges for power systems. These facilities experience abrupt power variations during model training and check-point-saving events, causing voltage deviations and frequency disturbances. Moreover, they operate as passive loads that draw power without offering any grid support. This paper presents an integrated architecture that combines Battery Energy Storage Systems (BESSs) within data centers using Grid-Forming inverters to provide active grid-support functions. Simulation results through MATLAB/Simulink demonstrate accurate power reference tracking under dynamic loading, with eight coordinated BESS units supplying instantaneous power during training and saving conditions. Under single-phase voltage depression near the data center bus, the BESS delivered reactive power support similar to a Static Synchronous Compensator. During grid disconnection, seamless islanded operation was achieved with stable voltage, frequency, and continuous power delivery at the data center bus.
title Mitigating Data Centers Load Risks and Enabling Grid Support Functions through Grid-Forming Control
topic Systems and Control
url https://arxiv.org/abs/2602.01013