Overview
Fatepur MySolar is a 30 MW solar PV facility located in India. It is operational and contributes to the country's growing renewable energy capacity.
Fatepur MySolar is a solar photovoltaic (PV) power plant with a capacity of 30 megawatts (MW), located in India. The facility is operational and plays a role in the country's renewable energy landscape, which is rapidly expanding under national targets and policies. The plant operates in the solar PV sector, a key technology for India's renewable energy goals. India has set ambitious targets under its National Solar Mission and aims to achieve 500 GW of non-fossil fuel capacity by 2030. The 30 MW scale places Fatepur MySolar in the small-to-medium range for utility-scale solar projects in India, which often range from 10 MW to over 100 MW. Environmentally, solar PV plants like Fatepur MySolar have a low carbon footprint during operation but require land use. In India, solar parks are often developed on arid or semi-arid land to minimize agricultural impact. The facility's location in Gujarat, a state with high solar insolation, supports efficient energy generation and grid integration.
Environmental context
Solar PV plants in India are typically sited in regions with high solar radiation, such as Gujarat, to maximize energy yield. The environmental impact includes land use for panel arrays, which can affect local ecosystems. However, solar energy avoids air emissions and water consumption compared to fossil fuels. Grid integration challenges exist due to solar variability, but India's grid infrastructure is adapting with storage and smart grid technologies.
Frequently asked questions
Fatepur MySolar is located in India, with coordinates approximately 23.419 N, 71.620 E, in the state of Gujarat.
Fatepur MySolar has a capacity of 30 megawatts (MW), making it a small-to-medium scale solar photovoltaic plant.
Yes, Fatepur MySolar is currently operational and generating electricity from solar energy.
India's solar energy growth is driven by the National Solar Mission, state-level renewable energy policies, and targets to achieve 500 GW of non-fossil fuel capacity by 2030, including incentives like solar parks and viability gap funding.
Solar PV plants have low operational emissions but require land for installation. They help reduce greenhouse gas emissions and air pollution compared to fossil fuels, though land use and panel disposal are considerations.