Green Powered Future

Development of a High-Temperature sCO2 Brayton cycle Test Loop

Development of a High-Temperature sCO2 Brayton cycle Test Loop Subcategory (under Clean Energy): Cross Cutting Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) IISc has been a pioneer in India in research on supercritical carbon dioxide (sCO2) power generation and transcritical (tCO2) carbon dioxide cooling. It has indigenously developed a […]

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Development of Supercritical Carbon dioxide Turbomachinery

Development of Supercritical Carbon dioxide Turbomachinery Subcategory (under Clean Energy): Solar (Thermal) Technology Readiness Level (TRL): TRL 6 – Full prototype at scale Technology Outline (Process Description) Carbon dioxide is the future ‘steam’ in power plants. CO2 when heated above 31.1 Deg. C at 73.9 bar enters into its supercritical state (sCO2). In its supercritical state,

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Saur Stambh- A Smart Solar High Mast Light with Long Range, Low Power, Wireless Wide Area Network for Agri-IOT Applications

Saur Stambh- A Smart Solar High Mast Light with Long Range, Low Power, Wireless Wide Area Network for Agri-IOT Applications Subcategory (under Clean Energy): Solar (PV) Technology Readiness Level (TRL): TRL 6 – Full prototype at scale Technology Outline (Process Description) A Solar Powered, Low TCO, High ROI, Universal, Scalable, Future Ready, Community Owned and

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Equipment and process development for crystalline silicon−based heterojunction (SHJ) solar cells using Hot−wire chemical vapour deposition (HWCVD) technique. DST/TMD/SERI/D33(G)

Equipment and process development for crystalline silicon−based heterojunction (SHJ) solar cells using Hot−wire chemical vapour deposition (HWCVD) technique. DST/TMD/SERI/D33(G) Subcategory (under Clean Energy): Solar (PV) Technology Readiness Level (TRL): TRL 5 – Large prototype Technology Outline (Process Description) Developed an industry−friendly process for fabricating Silicon heterojunction (SHJ) solar cells. The SHJ solar cell involves an

Equipment and process development for crystalline silicon−based heterojunction (SHJ) solar cells using Hot−wire chemical vapour deposition (HWCVD) technique. DST/TMD/SERI/D33(G) Read More »

Development of Autonomous Solar PV Panel Cleaning Robot

Development of Autonomous Solar PV Panel Cleaning Robot Subcategory (under Clean Energy): Solar (PV) Technology Readiness Level (TRL): TRL 4 – Early prototype Technology Outline (Process Description) Dust and other impurities deposit on the surface of the solar panels reducing the energy generation. PSG together with industry partner Solavio has developed prototypes of autonomous, water-free

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Equipment for Solar PV Sector

Equipment for Solar PV Sector Subcategory (under Clean Energy): Solar (PV) Technology Readiness Level (TRL): TRL 7 – Pre-commercial demonstration Technology Outline (Process Description) DS process has been pivotal production technology for the growth of mc-Si ingots. We have used India-made DS furnace to grow the mc-Si ingots, through mutual collaboration, interaction and sharing of

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Agrivoltaics: Dual use of land for farmers using a combination of Solar Photovoltaic Panels and Agriculture to Increase the Income of Farmers

Agrivoltaics: Dual use of land for farmers using a combination of Solar Photovoltaic Panels and Agriculture to Increase the Income of Farmers Subcategory (under Clean Energy): Solar (PV) Technology Readiness Level (TRL): TRL 7 – Pre-commercial demonstration Technology Outline (Process Description) Many times, our Indian farmers mostly face the problems due to heavy rains or

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Uneven Span Greenhouse integrated Semitransparent Photovoltaic Thermal (GiSPVT) System for Agricultural Applications

Uneven Span Greenhouse integrated Semitransparent Photovoltaic Thermal (GiSPVT) System for Agricultural Applications Subcategory (under Clean Energy): Solar (Thermal) Technology Readiness Level (TRL): TRL 6 – Full prototype at scale Technology Outline (Process Description) It is well known that food and energy requirement for human being is increasing day by day due to fast increasing of

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