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Full-Text Articles in Engineering

Soft-Switching Dc-Dc Converters, Ahmad Mousavi Aug 2013

Soft-Switching Dc-Dc Converters, Ahmad Mousavi

Electronic Thesis and Dissertation Repository

Power electronics converters are implemented with switching devices that turn on and off while power is being converted from one form to another. They operate with high switching frequencies to reduce the size of the converters' inductors, transformers and capacitors. Such high switching frequency operation, however, increases the amount of power that is lost due to switching losses and thus reduces power converter efficiency.

Switching losses are caused by the overlap of switch voltage and switch current during a switching transition. If, however, either the voltage across or the current flowing through a switch is zero during a switching transition, …


Three-Phase Reduced Switch Topologies For Ac-Dc Front-End And Single-Stage Converters, Dunisha Wijeratne Jul 2013

Three-Phase Reduced Switch Topologies For Ac-Dc Front-End And Single-Stage Converters, Dunisha Wijeratne

Electronic Thesis and Dissertation Repository

Conventional three-phase ac-dc converters have two converter stages. They have a front-end converter that converts the input ac voltage into an intermediate dc bus voltage and a second, back-end converter that converts this dc bus voltage into the desired isolated dc output voltage. The front-end converter also performs power factor correction (PFC) and shapes the three-phase input currents so that they are nearly sinusoidal and in phase with the three-phase input voltages. This allows the ac power source to be used in the most efficient manner.

The front-end ac-dc converter is typically implemented with six switches while the back-end dc-dc …


Delay Extraction Based Macromodeling With Parallel Processing For Efficient Simulation Of High Speed Distributed Networks, Sourajeet Roy Jul 2013

Delay Extraction Based Macromodeling With Parallel Processing For Efficient Simulation Of High Speed Distributed Networks, Sourajeet Roy

Electronic Thesis and Dissertation Repository

This thesis attempts to address the computational demands of accurate modeling of high speed distributed networks such as interconnect networks and power distribution networks. In order to do so, two different approaches towards modeling of high speed distributed networks are considered. One approach deals with cases where the physical characteristics of the network are not known and the network is characterized by its frequency domain tabulated data. Such examples include long interconnect networks described by their Y parameter data. For this class of problems, a novel delay extraction based IFFT algorithm has been developed for accurate transient response simulation.

The …


Design And Evaluation Of Fpga-Based Hybrid Physically Unclonable Functions, Sasan Khoshroo May 2013

Design And Evaluation Of Fpga-Based Hybrid Physically Unclonable Functions, Sasan Khoshroo

Electronic Thesis and Dissertation Repository

A Physically Unclonable Function (PUF) is a new and promising approach to provide security for physical systems and to address the problems associated with traditional approaches. One of the most important performance metrics of a PUF is the randomness of its generated response, which is presented via uniqueness, uniformity, and bit-aliasing. In this study, we implement three known PUF schemes on an FPGA platform, namely SR Latch PUF, Basic RO PUF, and Anderson PUF. We then perform a thorough statistical analysis on their performance. In addition, we propose the idea of the Hybrid PUF structure in which two (or more) …


Design And Optimization Of Efficient Wireless Power Transfer Links For Implantable Biotelemetry Systems, Shawon Senjuti Mar 2013

Design And Optimization Of Efficient Wireless Power Transfer Links For Implantable Biotelemetry Systems, Shawon Senjuti

Electronic Thesis and Dissertation Repository

Wireless power transmission is a technique that converts energy from radio frequency (RF) electromagnetic (EM) waves into DC voltage, which has been used here for the purpose of providing a power supply to bio–implantable batteryless sensors. The main constraints of the design are to achieve the minimum power required by the application, by still keeping the implant size small enough for the living subject’s body. Resonance–based inductive coupling is a method being actively researched for the use in this type of power transmission, which uses two pairs of inductor coils in the external and implant circuits.

In this work, we …