Mitigation of Datacenter Demand Ramping and Fluctuation using Hybrid ESS and Supercapacitor

Fuente: arXiv
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Autori principali: Ko, Min-Seung, Shim, Jae Woong, Zhu, Hao
Natura: Preprint
Pubblicazione: 2025
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author Ko, Min-Seung
Shim, Jae Woong
Zhu, Hao
author_facet Ko, Min-Seung
Shim, Jae Woong
Zhu, Hao
contents This paper proposes a hybrid energy storage system (HESS)-based control framework that enables comprehensive power smoothing for hyperscale AI datacenters with large load variations. Datacenters impose severe ramping and fluctuation-induced stresses on the grid frequency and voltage stability. To mitigate such disturbances, the proposed HESS integrates a battery energy storage system (BESS) and a supercapacitor (SC) through coordinated multi-timescale control. A high-pass filter (HPF) separates the datacenter demand into slow and fast components, allocating them respectively to the ESS via a leaky-integral controller and to the SC via a phase-lead proportional-derivative controller enhanced with feedforward and ramp-tracking compensation. Adaptive weighting and repetitive control mechanisms further improve transient and periodic responses. Case studies verify that the proposed method effectively suppresses both ramping and fluctuations, stabilizes the system frequency, and maintains sustainable state-of-charge (SoC) trajectories for both ESS and SC under prolonged, stochastic training cycles.
format Preprint
id arxiv_https___arxiv_org_abs_2512_08076
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Mitigation of Datacenter Demand Ramping and Fluctuation using Hybrid ESS and Supercapacitor
Ko, Min-Seung
Shim, Jae Woong
Zhu, Hao
Systems and Control
This paper proposes a hybrid energy storage system (HESS)-based control framework that enables comprehensive power smoothing for hyperscale AI datacenters with large load variations. Datacenters impose severe ramping and fluctuation-induced stresses on the grid frequency and voltage stability. To mitigate such disturbances, the proposed HESS integrates a battery energy storage system (BESS) and a supercapacitor (SC) through coordinated multi-timescale control. A high-pass filter (HPF) separates the datacenter demand into slow and fast components, allocating them respectively to the ESS via a leaky-integral controller and to the SC via a phase-lead proportional-derivative controller enhanced with feedforward and ramp-tracking compensation. Adaptive weighting and repetitive control mechanisms further improve transient and periodic responses. Case studies verify that the proposed method effectively suppresses both ramping and fluctuations, stabilizes the system frequency, and maintains sustainable state-of-charge (SoC) trajectories for both ESS and SC under prolonged, stochastic training cycles.
title Mitigation of Datacenter Demand Ramping and Fluctuation using Hybrid ESS and Supercapacitor
topic Systems and Control
url https://arxiv.org/abs/2512.08076