Overview
Kajipuram is a 30 MW operational solar PV plant located in India. It contributes to the country's growing renewable energy capacity under national solar targets.
Kajipuram is a solar photovoltaic (PV) power plant located in India, with an operational status and a capacity of 30 megawatts. This scale places it as a medium-sized solar facility within India's vast renewable energy landscape, which is rapidly expanding under the National Solar Mission. The plant operates under India's regulatory framework, which includes national renewable purchase obligations (RPOs) and state-level solar policies. Solar PV technology converts sunlight directly into electricity, and the 30 MW capacity can power approximately 20,000 households annually, depending on local insolation and grid conditions. Environmentally, the facility supports India's goal of 500 GW of non-fossil fuel capacity by 2030. Solar PV plants have minimal water consumption and no direct emissions, though they require land use. The plant's location in a sunny region ensures high generation efficiency, contributing to grid stability and reducing reliance on coal-fired power.
Environmental context
Solar PV plants like Kajipuram have a low environmental footprint during operation, with no air or water pollution. However, land use for solar arrays can impact local ecosystems. In India, solar farms are often sited on arid or degraded land to minimize conflicts. The plant's location in a region with high solar irradiance maximizes energy yield while avoiding sensitive habitats.
Frequently asked questions
The Kajipuram solar PV plant is located in India, at coordinates approximately 16.8840° N, 77.5870° E.
The Kajipuram solar plant has an installed capacity of 30 megawatts (MW), making it a medium-scale solar facility.
Yes, the Kajipuram solar plant is currently operational and generating electricity.
India's solar energy sector is supported by the National Solar Mission, renewable purchase obligations (RPOs), and state-level solar policies, aiming for 500 GW of non-fossil fuel capacity by 2030.
Solar PV plants produce no direct emissions, consume minimal water, and help reduce reliance on fossil fuels, contributing to climate change mitigation and air quality improvement.