Defence Minister Approves 250 MW Solar Project on Defence Land in Sitapur
Rajnath Singh Approves 250 MW Solar Project in Sitapur

Lucknow: Defence Minister Rajnath Singh has approved the development of a 250 MW solar power project integrated with a battery energy storage system on approximately 850 acres of vacant defence land in Sitapur, Uttar Pradesh. This marks the first large-scale renewable energy initiative of its kind to be developed on defence land, aimed at strengthening energy security for defence establishments in the state while supporting the government's broader objectives of increasing renewable energy use and reducing dependence on conventional power sources.

Project Details and Implementation

According to the Ministry of Defence, the project is expected to lower long-term electricity procurement costs for defence establishments and generate substantial savings over its operational lifespan. NTPC Green Limited will implement the project through a competitive bidding process intended to secure optimal energy pricing. The project will be developed in coordination with the integrated headquarters of the Ministry of Defence (Army) and the Directorate General Defence Estates.

Strategic Importance

The ministry stated that the initiative combines national security requirements with renewable energy development and efficient use of vacant defence land. It added that the project could serve as a model for future solar and energy storage projects on defence land across the country. Once complete, the Sitapur project is expected to be among the largest renewable energy installations established on defence land in India.

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Broader Impact

This project aligns with the government's commitment to enhancing renewable energy capacity and reducing carbon emissions. By utilizing vacant defence land, the initiative not only contributes to energy security but also optimizes the use of available resources. The integration of battery storage ensures a stable power supply, addressing intermittency issues associated with solar energy.

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