Overview
Hothi is a 16.2 MW solar PV facility located in India. The plant is operational and contributes to the country's renewable energy capacity.
Hothi is a solar photovoltaic (PV) power plant located in India, with a capacity of 16.2 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 targets. The plant uses solar PV technology to convert sunlight into electricity. With a capacity of 16.2 MW, it falls within the small-to-medium scale for solar farms in India. India has set ambitious renewable energy goals under its National Solar Mission and aims to achieve 500 GW of non-fossil fuel capacity by 2030, supported by policies such as renewable purchase obligations (RPOs) and solar park schemes. The electricity generated by Hothi is fed into the local grid, helping to reduce reliance on fossil fuels and lower carbon emissions. Solar PV plants like Hothi are typically deployed in regions with high solar irradiance, and India's abundant sunshine makes solar a key renewable energy source for the country.
Environmental context
Solar PV plants like Hothi have a low environmental footprint during operation, producing no direct emissions. However, land use for solar arrays can impact local ecosystems, and large-scale installations may require clearing of vegetation. In India, solar farms are often sited in arid or semi-arid regions to minimize land-use conflicts. The plant's location in a rural area of Karnataka likely supports local energy needs without significant ecological disruption.
Frequently asked questions
The Hothi solar PV plant is located in India, at coordinates 17.613000 N, 77.571000 E, in the state of Karnataka.
The Hothi solar plant has a capacity of 16.2 megawatts (MW), making it a small-to-medium scale solar facility.
Yes, the Hothi 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 technology converts sunlight directly into electricity using semiconductor materials. Panels are installed in arrays, and the generated DC power is converted to AC for grid use.