Overview
Kanakagiri A is a 15 MW solar PV facility located in Karnataka, India. The plant is operational and contributes to India's renewable energy capacity.
Kanakagiri A is a solar photovoltaic (PV) power plant with a capacity of 15 megawatts, located in the Koppal district of Karnataka, India. The facility is operational and represents a medium-scale solar installation within the country's rapidly expanding renewable energy sector. The plant operates under India's national renewable energy framework, which includes targets under the National Solar Mission and state-level renewable purchase obligations. Solar PV technology converts sunlight directly into electricity, and the 15 MW capacity places it in the small-to-medium scale range for utility-scale solar projects in India. This facility contributes to Karnataka's renewable energy mix, supporting grid stability and reducing dependence on fossil fuels. The plant's location in a semi-arid region with high solar insolation makes it well-suited for solar generation, and its output helps meet local energy demand while supporting India's climate goals.
Environmental context
The plant is situated in a semi-arid region of Karnataka, characterized by high solar irradiation and low rainfall. Solar PV installations in such areas have minimal water consumption and low operational emissions, though land use for solar farms can impact local ecosystems. The facility's design likely incorporates measures to minimize soil erosion and support local biodiversity.
Frequently asked questions
Kanakagiri A is located in the Koppal district of Karnataka, India, at coordinates 15.5520° N, 76.4300° E.
Kanakagiri A has a capacity of 15 megawatts (MW), making it a medium-scale solar photovoltaic facility.
The plant uses solar photovoltaic (PV) technology, which converts sunlight directly into electricity.
Kanakagiri A contributes to India's target of 500 GW of non-fossil fuel capacity by 2030, as part of the National Solar Mission and state-level renewable purchase obligations.
Solar PV plants have low water consumption and zero emissions during operation, but require land that may affect local habitats. Proper siting and design can mitigate these impacts.