ACME Solar Begins Operations of 142-MW Battery Energy Storage Project in Rajasthan
ACME Solar Holdings announced on Friday that it has started operations of a 142.67-MW battery energy storage system project in Rajasthan. The company made the announcement through an exchange filing, marking a significant milestone in its renewable energy expansion efforts.
Project Specifications and Capacity
The newly operational project is part of a larger 481.49-MWh unit of battery energy storage system. According to the company's statement, this represents phase-1 of ACME Solar's total planned Battery Energy Storage System (BESS) capacity of 585 MW/2011.24 MWh. The project has been commissioned through the company's various subsidiaries and is now connected to the operational interstate transmission system.
The 142.67 MW/481.49 MWh capacity represents the initial phase of what appears to be a multi-phase development plan. The company indicated that this is only the beginning of their broader energy storage initiative, with significantly more capacity planned for future phases.
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Company Profile and Portfolio
ACME Solar Holdings is based in Gurugram and operates as a leading integrated renewable energy player. The company maintains a diversified portfolio spanning multiple renewable energy technologies, including solar, wind, storage, and hybrid solutions. According to the company information provided, ACME Solar's total portfolio encompasses 8,071 MW across these various renewable energy segments.
The company's integrated approach to renewable energy development positions it as a comprehensive player in India's growing clean energy sector. The battery energy storage system project in Rajasthan adds to the company's storage capabilities within its broader renewable energy portfolio.
Infrastructure and Grid Connection
The battery energy storage project has been successfully connected to the operational interstate transmission system, enabling it to participate in grid operations and energy storage services. This connection to the interstate transmission infrastructure suggests the project's potential role in supporting grid stability and energy management across state boundaries.
The operational status of the project indicates that all necessary infrastructure, testing, and commissioning activities have been completed. The connection to the interstate transmission system represents a critical component for the project's functionality and its ability to provide energy storage services to the broader electrical grid network.
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