Global battery energy storage system (BESS) capacity is set for rapid expansion as rising electricity demand from electrification, industry and AI-driven data centres accelerates investment, according to GlobalData.
The intelligence firm forecasts global installed BESS capacity will increase sixfold between 2025 and 2030, representing a compound annual growth rate (CAGR) of 42 per cent.
Growing deployment of wind and solar power is also boosting demand for batteries to address grid variability, reduce imbalances and limit renewable energy curtailment.
Falling lithium-ion battery costs, stronger supply chains and supportive government policies are further driving market growth.
GlobalData’s latest report, Strategic
Intelligence: Batteries in Power (2026), says China and the US will remain the
world’s leading BESS markets.
Together, the two countries accounted for 74.6 per cent of
global installed battery storage capacity at the end of 2025, supported by
favourable regulations, large-scale utility procurement and ambitious clean
energy targets.
Rehaan Shiledar, Power Analyst at GlobalData, comments: “The
global power sector is increasingly standardising on four-hour battery energy
storage systems rather than two-hour designs. Higher shares of solar and wind
create longer daily mismatches between generation and demand. It makes
multi-hour “shifting”, especially moving midday solar into the evening peak,
more valuable to reduce curtailment and provide reliable capacity during steep
net-load ramps. This is reflected in utility and regulator procurements, which
often treat four hours as a minimum for capacity credit and resource adequacy.”
For instance, under California Public Utilities Commission
(CPUC) programmes, most of the battery projects built have a four-hour duration.
Australian state tenders in Victoria and New South Wales
specify multi-hour storage to firm renewables.
Similar duration-lengthening trends are emerging in the UK
as projects shift from frequency-response toward energy and capacity revenues,
while the Middle East has contracted multi-hour solar-plus-storage for
dispatchable evening output.
Co-located hybrid plants, especially solar-plus-storage, are
becoming the default because sharing a single site and interconnection cuts
cost and schedule risk.
The battery also increases revenue by capturing curtailed
solar and shifting delivery into higher-price hours like the evening peak.
Co-location also enables export-limited designs where PV is
oversized behind a constrained grid tie and excess energy is stored and later
discharged without breaching the interconnection limit.
Such models are common in California and help meet resource
adequacy by providing reliable capacity during peak hours.
In Texas, electricity prices vary widely by location and
time, and battery storage can monetise this volatility and enhance system
reliability by dynamically charging during low-price periods and discharging
when prices spike.
Shiledar adds: “BESS is expected to become a main backup and
balancing tool for data centres, moving beyond brief uninterruptible power
supply (UPS) support. It actively manages power between the grid and IT
equipment, protecting systems from grid problems and on-site power limits.
Batteries react in milliseconds, so they can handle sudden voltage or frequency
issues and provide instant backup during switchover.”
Batteries can lower costs and work around grid limits by
keeping power use within the site’s connection limit, covering short peak
loads, cutting demand charges, and smoothing rapid load changes, which helps
data centres grow faster where the grid is constrained.
Shiledar concludes: “Energy shifting has become the fulcrum of the battery storage value proposition, recasting batteries from ancillary grid-support tools into system-critical infrastructure. By absorbing surplus renewable output and redeploying it into periods of higher demand and pricing, batteries bolster reliability, curtailment, relieve network congestion, and reduce reliance on peaking generation. As costs continue to decline and projects more effectively monetise stacked revenue streams, supported by government mandates, energy shifting will remain the principal catalyst for battery storage deployment and a cornerstone of high-renewables power systems.” -OGN/TradeArabia News Service