Overview
Goyalkhedi is a 32 MW operational solar PV facility in India, contributing to the country's renewable energy capacity under national solar targets.
Goyalkhedi is a solar photovoltaic (PV) power plant located in India, with an installed capacity of 32 megawatts (MW). The facility is operational and plays a role in India's growing solar energy sector, which is a key component of the nation's renewable energy strategy. The plant uses solar PV technology to convert sunlight into electricity. With a capacity of 32 MW, it falls within the medium-scale range for solar installations in India. The facility operates under India's regulatory framework, which includes national solar targets and state-level renewable purchase obligations (RPOs) that drive demand for solar power. Solar PV plants like Goyalkhedi help reduce greenhouse gas emissions and support India's goal of achieving 500 GW of non-fossil fuel capacity by 2030. The facility's output is fed into the grid, contributing to local energy security and the transition to cleaner energy sources.
Environmental context
The Goyalkhedi solar PV plant is located in a region with high solar irradiance, typical of central India. Solar farms require large land areas, which can impact local land use and ecosystems. However, solar PV has minimal water consumption and no air emissions during operation, making it a low-impact renewable energy source. The facility's location avoids sensitive ecological areas, and its operation supports regional biodiversity by reducing reliance on fossil fuels.
Frequently asked questions
The Goyalkhedi solar PV plant is located in India at coordinates 23.748000 N, 75.640000 E, in the state of Madhya Pradesh near the town of Goyalkhedi.
The Goyalkhedi solar plant has an installed capacity of 32 megawatts (MW), making it a medium-scale solar photovoltaic facility.
Yes, the Goyalkhedi solar plant is currently operational and generating electricity from solar energy.
India's solar energy sector is supported by national targets under the National Solar Mission, state-level Renewable Purchase Obligations (RPOs), and various incentives such as accelerated depreciation and viability gap funding.
Solar PV technology converts sunlight directly into electricity using semiconductor materials. When sunlight hits the solar panels, it excites electrons, creating a direct current (DC) that is then converted to alternating current (AC) for grid use.