About
Dr. Nabin Sarmah is an Assistant Professor in the Tezpur University, Assam, India having more than seven years of research experience in photovoltaic systems. His expertise lies in design and development of photovoltaic systems including hybrid energy systems. He also has wide experience in developing optical, thermal and electrical models for performance analysis of PV systems. Prior to the current position, Dr Sarmah was working as a Postdoctoral Research Fellow in Exeter University and Heriot-Watt University, UK on an UK-India collaborative project. He has completed his PhD in 2012 in the area of concentrating photovoltaic system for building integration from Heriot-Watt University, Edinburgh, UK. Dr Sarmah was also a visiting fellow in Beijing-Jaotong University, Beijing, China during November-December 2011. Since his post-doctoral position, Dr Sarmah has secured several research funding of more than ₹ 200 Lakhs, which includes early career Researcher grant through EU 7 – Framework, UK. The research work of Dr Sarmah has been internationally recognised by 18 journal paper in peer reviewed journals, 28 conference papers and 3 book chapters so far. Currently he is supervising 4 PhD students and a member of International Solar Energy Society.
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Publications (31)
- Effect of Environmental Factors on Photovoltaic Soiling: Experimental and Statistical Analysis Save
- Performance Analysis of Spectrum-Dependent Integrated Thermal-Electrical Model of a PV Module Save
- Analysis of Soiling Loss in Photovoltaic Modules: A Review of the Impact of Atmospheric Parameters, Soil Properties, and Mitigation Approaches Save
- Modelling photovoltaic soiling losses through optical characterization Save
- A Soft Computing Approach for Optimal Design of a DC-DC Buck Converter Save
- Numerical studies of thermal comfort for semi-transparent building integrated photovoltaic (BIPV)-vacuum glazing system Save
- A review of algorithms for control and optimization for energy management of hybrid renewable energy systems Save
- Electrical and thermal modelling to evaluate photovoltaic module performance in varying outdoor condition Save
- A unified global investigation on the spectral effects of soiling losses of PV glass substrates: preliminary results Save
- Small-Volume Fabrication of a 144-Cell Assembly for High-Concentrating Photovoltaic Receivers Save