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Name: |
Professor DA Stone |
Organisation: |
University of Sheffield |
Department: |
Electronic and Electrical Engineering |
Current EPSRC-Supported Research
Topics: |
Electric Motor & Drive Systems
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Energy Efficiency
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Energy Storage
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Power Electronics
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Wind Power
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Current EPSRC Support |
EP/R004900/1 | A New Partnership in Offshore Wind | (C) |
EP/P015859/1 | FPeT: Framework for designing piezoelectric transformer power supplies | (C) |
EP/N032888/1 | Multi-scale ANalysis for Facilities for Energy STorage (Manifest) | (C) |
EP/N022289/1 | TransEnergy - Road to Rail Energy Exchange (R2REE) | (P) |
EP/L016818/1 | EPSRC Centre for Doctoral Training in Energy Storage and its Applications | (P) |
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Previous EPSRC Support |
EP/L001004/1 | Battery Characterisation and Management - the key to Smart Grids and the Integration of Electric Vehicles | (C) |
EP/I038586/1 | Developing FUTURE Vehicles (Fundamental Understanding of Technologies for Ultra Reduced Emission Vehicles) | (C) |
EP/I038543/1 | Vehicle Electrical Systems Integration (VESI) | (C) |
EP/I032541/1 | Photovoltaics for Future Societies | (C) |
EP/H050221/1 | Ultra Battery Feasibility - Investigation into the combined battery-supercapacitor for hybrid electric vehicle (HEV) applications | (P) |
DT/E005195/1 | Power Electronics for Adverse High Temperature Environments (PEATE) | (C) |
EP/D079527/1 | Advanced Cell State of Function Models for HEV operation | (P) |
GR/S81971/01 | Zero Emission Small vehicle with integrated high Temperature battery and FUel CelL (ZESTFUL) | (C) |
GR/N39777/01 | RHOLAB - RELIABLE, HIGHLY OPTIMISED, LEAD ACID BATTERY | (P) |
GR/N35595/01 | MODELLING AND DIAGNOSTICS OF THE DYNAMICAL BEHAVIOUR OF LOW-PRESSURE DISCHARGES | (C) |
GR/J01202/01 | THE DEVELOPMENT OF RESONANT SWITCHING AND PULSE DENSITY MODULATION TECHNIQUES FOR BRUSHLESS MACHINE DRIVES | (C) |
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Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator
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