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Full-Text Articles in Engineering

Comparison Of Single Stage And Two Stage Stage Grid-Tie Inverters, Keith Mansfield Jan 2007

Comparison Of Single Stage And Two Stage Stage Grid-Tie Inverters, Keith Mansfield

Electronic Theses and Dissertations

This thesis compares two methods of designing grid-tie inverters. The first design topology is a traditional two stage approach consisting of an isolated DC-DC converter on the input followed by a high switching frequency SPWM (Sinusoidal Pulse Width Modulation) stage to produce the required low frequency sine wave output. The novel second design approach employs a similar DC-DC input stage capable of being modulated to provide a rectified sine wave output voltage/current waveform. This stage is followed by a simple low frequency switched Unfolding Stage to recreate the required sine wave output. Both of the above designs have advantages and …


Maximum Energy Harvesting Control Foroscillating Energy Harvesting Systems, John Elmes Jan 2007

Maximum Energy Harvesting Control Foroscillating Energy Harvesting Systems, John Elmes

Electronic Theses and Dissertations

This thesis presents an optimal method of designing and controlling an oscillating energy harvesting system. Many new and emerging energy harvesting systems, such as the energy harvesting backpack and ocean wave energy harvesting, capture energy normally expelled through mechanical interactions. Often the nature of the system indicates slow system time constants and unsteady AC voltages. This paper reveals a method for achieving maximum energy harvesting from such sources with fast determination of the optimal operating condition. An energy harvesting backpack, which captures energy from the interaction between the user and the spring decoupled load, is presented in this paper. The …


Skin And Proximity Effects In Two Parallel Plates, Hamdi Eltayib Abdelbagi Jan 2007

Skin And Proximity Effects In Two Parallel Plates, Hamdi Eltayib Abdelbagi

Browse all Theses and Dissertations

Time varying currents within winding and core conductors induce magnetic fields. When more than one conductor is present the resultant magnetic field can be found by adding the individual magnetic fields by superposition. The resultant magnetic field in turn induces eddy currents within each electrical component within the vicinity of the resultant magnetic field. Eddy currents flow in the opposite direction of the primary current and increase the resistance by reducing the area in which the primary current has to travel. Eddy currents also reduce the effectiveness of the conductors to conductor high frequency currents. Skin and proximity effects were …