India’s solar sector is confronting an unexpected shift: while photovoltaic modules are lasting longer than ever, they may be losing economic relevance much sooner.
For years, a 25-year performance warranty has been central to solar project economics. Developers typically assumed that once installed, a module would deliver steady output with gradual degradation over decades. But rapid advances in technology are beginning to challenge that assumption.
Industry experts now point to what is being described as a “solar shelf-life” problem where modules remain functional but are no longer the most efficient or cost-effective option for the same asset base.
This shift comes at a time when India’s solar market is expanding aggressively. The country’s installed solar capacity has crossed 160 GW, supported by policy interventions such as the PM Surya Ghar rooftop scheme and domestic manufacturing mandates under ALMM (Approved List of Models and Manufacturers). However, a mismatch persists: module manufacturing capacity has scaled up rapidly, while domestic cell production remains limited, affecting supply chains and pricing.
At the same time, technology cycles are accelerating. The industry has moved from multi-crystalline to mono-PERC and now toward n-type technologies such as TOPCon, with efficiencies reaching 22–24% globally. Bifacial modules, once considered premium, now dominate installations.
“The pace of change means developers are no longer comparing a module only to its past performance, but to what’s available in the market today,” said a senior analyst at a renewable energy consultancy. “A plant built five years ago may still be operating well, but it could be significantly underperforming compared to new installations.”
This has implications for both utility-scale and rooftop segments. In large solar parks, where land and grid infrastructure are already secured, replacing modules, a process known as repowering is becoming economically viable. With module prices having fallen by nearly 90–95% over the past decade, upgrading systems without rebuilding entire plants is increasingly feasible.
However, the equation is different for residential consumers. Despite the push from schemes like PM Surya Ghar, rooftop adoption still faces barriers including high upfront costs, limited financing options, and low consumer awareness. For households, replacing modules prematurely may not be financially attractive due to installation and labour costs.
Another emerging challenge is how developers assess long-term value. Traditionally, procurement decisions focused on cost per watt. But industry participants say the focus is shifting toward metrics such as levelised cost of electricity (LCOE), degradation rates, and energy yield.
“There is a growing realisation that the cheapest module is not necessarily the best investment,” said an EPC contractor involved in utility-scale projects. “Performance over time and compatibility with future upgrades are becoming critical.”
Yet, the rapid turnover of technology also introduces risks. Newer cell architectures, while more efficient, have limited long-term field data. Concerns around degradation, UV stability, and performance in India’s diverse climatic conditions remain areas of scrutiny.
There is also a downstream implication. If modules are replaced earlier than expected, India could face a surge in solar waste. The country currently lacks a robust ecosystem for large-scale recycling and reuse, a gap that could widen as installations grow.
Looking ahead, industry observers say solar projects may need to be designed not as static assets but as evolving platforms. Developers are beginning to consider “repowering readiness” ensuring that mounting structures, inverters, and grid connections can accommodate future upgrades.
The shift marks a broader transition in how solar assets are valued. The question is no longer just how long a module will last, but whether it will remain economically optimal over its lifetime.
As one analyst put it, “In today’s solar market, the risk is not that a module stops working, it’s that something better arrives much sooner.”
The Author of this article is – Dushyant Kumar, PV Quality Manager, AXITEC Energy India Pvt. Ltd, leading solar module manufacturer
The views and opinions expressed in this article are the author’s own, and do not necessarily reflect those held by pv magazine.
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