Overview
Muddebihal is a 20 MW operational solar PV plant in Karnataka, India. It contributes to India's renewable energy capacity under national solar targets.
Muddebihal is a solar photovoltaic (PV) power plant located near Muddebihal town in the state of Karnataka, India. With a capacity of 20 megawatts (MW), it falls within the medium-scale range for solar PV facilities in the country. The plant is operational and supports India's growing renewable energy infrastructure. The facility operates under India's national solar mission and state-level renewable energy policies. India has set ambitious targets to achieve 500 GW of non-fossil fuel capacity by 2030, with solar power playing a key role. The plant benefits from Karnataka's strong solar resource and supportive regulatory framework, including net metering and renewable purchase obligations. The Muddebihal solar PV plant contributes to local grid stability and reduces dependence on fossil fuels. It helps meet the energy needs of the surrounding region while supporting India's climate goals. The facility also aligns with the country's commitment to the Paris Agreement and its Nationally Determined Contributions.
Environmental context
The plant is located in a semi-arid region of Karnataka with high solar insolation, making it suitable for solar energy generation. Solar PV installations have minimal water consumption and low operational emissions, but require land use that may affect local ecosystems. Proper siting and maintenance can mitigate impacts on soil and biodiversity.
Frequently asked questions
The Muddebihal solar PV plant is located near Muddebihal town in the state of Karnataka, India.
The Muddebihal solar plant has an installed capacity of 20 megawatts (MW), making it a medium-scale solar PV facility.
Yes, the Muddebihal solar plant is currently operational and generating electricity.
India's solar energy sector is supported by the National Solar Mission, state-level renewable purchase obligations, and targets to achieve 500 GW of non-fossil fuel capacity by 2030.
Solar PV generates electricity with zero operational emissions, reduces reliance on fossil fuels, and has low water consumption, contributing to climate change mitigation.