Overview
Lomada is a 30 MW solar PV facility located in India. The plant is operational and contributes to the country's growing renewable energy capacity.
Lomada is a solar photovoltaic (PV) power plant with a capacity of 30 megawatts (MW), located in India at coordinates 14.588000, 78.215000. The facility is operational and represents a medium-scale solar installation within the Indian renewable energy landscape. The plant operates under India's national renewable energy framework, which includes targets under the National Solar Mission and state-level renewable purchase obligations (RPOs). Solar PV technology converts sunlight directly into electricity, and the 30 MW capacity places Lomada in the mid-range for utility-scale solar projects in India. Lomada's electricity is fed into the regional grid, supporting India's goal of achieving 500 GW of non-fossil fuel capacity by 2030. The facility contributes to reducing greenhouse gas emissions and diversifying the energy mix in the region.
Environmental context
Solar PV installations like Lomada have a low environmental footprint during operation, with no emissions or water consumption. However, land use for solar farms can impact local ecosystems and agriculture. In arid or semi-arid regions, careful siting is needed to avoid habitat disruption. The facility's location in India's southern region benefits from high solar irradiance, maximizing energy generation.
Frequently asked questions
The Lomada solar PV plant is located in India at coordinates 14.588000, 78.215000.
The Lomada solar plant has a capacity of 30 megawatts (MW).
Yes, the Lomada solar plant is currently operational.
India's solar energy sector is supported by the National Solar Mission, state-level renewable purchase obligations (RPOs), and various incentives like accelerated depreciation and viability gap funding.
Solar PV technology converts sunlight directly into electricity using semiconductor materials. When sunlight hits the solar cells, it excites electrons, generating direct current (DC) electricity, which is then converted to alternating current (AC) for grid use.