Beyond Germany: Why Battery Co-location is becoming a default strategy in all of Europe
5 min read
The battery energy storage landscape in Europe is evolving rapidly. What was once a niche add-on to large-scale solar or wind projects is now taking center stage in investor strategies, policy discussions, and grid development plans. In 2025, co-located storage and renewable energy assets are no longer an experimental configuration they're fast becoming the norm.
As grid congestion becomes a serious barrier in core European markets like Germany, the ability to pair battery storage with existing or planned renewable generation offers developers a crucial advantage. Standalone PV projects are increasingly difficult to justify on their own, particularly where grid access is restricted or feed-in tariffs are declining.
Co-location, on the other hand, presents a clear value proposition. By sharing infrastructure and substation access, project economics improve, often adding 20–30% to the overall value per installed kilowatt. Moreover, batteries offer a route to diversify revenue streams through ancillary services, intraday arbitrage, and capacity markets.
Despite surging investor demand, project timelines remain a hurdle. It often takes two years just to get from a landowner agreement to the first formal grid application. Add technical planning, substation availability, and local permitting, and timelines can stretch to three years or more before commissioning.
This timeline pressure is particularly pronounced in battery projects, where delays can significantly impact the health and performance of installed systems. Once a battery is on the ground, it needs to be operational. Idle storage systems deteriorate, which adds financial pressure on developers to execute flawlessly and on time.
These challenges are pushing a new wave of vertically integrated players to emerge. Rather than coordinating a patchwork of external contractors and consultants, some companies are bringing engineering, procurement, construction, permitting, and grid connection in-house, reducing interfaces, increasing speed, and saving costs.
Across Europe, the true bottleneck isn’t always land or finance, it’s substation access. Existing connections are being snapped up quickly, and greenfield development often requires building or upgrading substations at costs exceeding €5 million. But those who can take this risk are often rewarded with better permitting success rates and more flexibility in project design.
Grid operators, particularly in Germany, are reporting massive application backlogs. Developers who can’t move quickly through the queue or who lack the capital to make substantial upfront payments are finding their projects stuck. It’s a natural filtering process that may ultimately stabilize the market, weeding out projects unlikely to reach commissioning.
As core markets like Germany might become saturated, developers are eyeing opportunities in the southeast of Europe. Bulgaria is emerging as a strong early mover, with hundreds of megawatts of co-located and standalone battery projects already underway. Romania isn’t far behind, and Poland is preparing a 2 GW tender that could redefine its grid infrastructure planning.
Meanwhile, the UK continues to be a mature and instructive market for storage deployment. With several years of operational BESS projects, the British approach has provided a working template for both technology providers and grid regulators. Though revenue expectations have normalized, investor appetite remains solid.
The direction is clear: battery storage is now fundamental to the energy transition. It’s enabling more renewables, optimizing infrastructure, and unlocking new commercial models. Whether deployed in co-location or standalone configurations, batteries are at the center of nearly every serious renewable strategy in Europe today.
But to succeed in this new era, developers need more than land and ambition. They need speed, capital, grid access and the ability to adapt quickly to shifting regulatory and market dynamics. Those who can streamline the complex process from land acquisition to grid connection will lead the charge.
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