Analysis Of Fiber Bragg Gratings For Ultrasonic Detection,
2012
University of Nebraska-Lincoln
Analysis Of Fiber Bragg Gratings For Ultrasonic Detection, Tongqing Liu
Department of Electrical and Computer Engineering: Dissertations, Theses, and Student Research
Fiber optic sensors became an emerging technique to detect ultrasonic emissions in the last decade. Their light weight, immunity to electromagnetic interference and capacity of being multiplexed make them defeat their electronic counterparts in various applications. In this thesis we presented a novel fiber optic ultrasonic sensor based on pi phase shift fiber Bragg gratings. Numerical simulations were performed to study the characteristics of pi phase shift fiber Bragg gratings impinged by ultrasonic waves. The coupling theory was introduced to analyze the change of fiber Bragg gratings when impinged by ultrasonic waves, and the transfer matrix method was utilized to …
Highly Sensitive X-Ray Detectors In The Low-Energy Range On N-Type 4h-Sic Epitaxial Layers,
2012
University of South Carolina - Columbia
Highly Sensitive X-Ray Detectors In The Low-Energy Range On N-Type 4h-Sic Epitaxial Layers, K. C. Mandal, P. G. Muzykov, J. R. Terry
Faculty Publications
No abstract provided.
Nanoscale Contacts Between Semiconducting Nanowires And Metallic Graphenes,
2012
Purdue University
Nanoscale Contacts Between Semiconducting Nanowires And Metallic Graphenes, Seongmin Kim, David B. Janes, Sung-Yool Choi, Sanghyun Ju
Birck and NCN Publications
Metal–semiconductor (M–S) junctions are important components in many semiconductor devices, and there is growing interest in realizing high quality M–S contacts that are optically transparent. In this paper, we present our investigations into the characteristics of M–S junction in a semiconducting ZnO nanowire that was directly grown on a multilayer graphene film (MGF). The synthesized nanowires were fabricated into two-terminal devices with MGF as one contact and Al as the other contact. By comparison with devices employing Al contacts at both ends, the nanowire resistivity and specific contact resistivity of the MGF–nanowire contact can be extracted. The extracted specific contact …
Energy Efficiency Analysis And Optimization On Mobile Video Wireless Delivery,
2012
University of Nebraska-Lincoln
Energy Efficiency Analysis And Optimization On Mobile Video Wireless Delivery, Jianxin Sun
Department of Computer Electronics and Engineering: Dissertations, Theses, and Student Research
Micro-electronic industry has been boosting the capability of wireless mobile devices on full-scale. However, battery, as the only power source of most mobile devices, is experiencing a relatively slow development. Therefore, how to optimally utilize the limited battery energy on mobile devices under a predefined performance requirement becomes a critical issue. On the other hand, it is still unclear that how the battery capacity consumption is allocated on different working pattern of a specific video codec under various tempo-spatial scales and parameters, which has posed a design challenge on power management on multimedia communication system. Furthermore, an optimization method is …
Solar Light Bulb,
2012
Department of Electrical & Computer Engineering, University of Texas at El Paso
Solar Light Bulb, David G. Guzman, Virgilio Gonzalez
COURI Symposium Abstracts, Summer 2012
The Solar Lighting project is a work driven towards building a low-cost and environmental-friendly solar bulb and to understanding the science behind its behavior. A solar light bulb refers to a device capable of absorbing and transferring solar energy to light up an enclosed area. By using the physical properties of fluids and light is possible to manipulate solar light waves to illuminate an enclosed structure. Moreover, this project attempts to utilize recycled materials that reduce the cost of such device, helping not only the planet but also the costumer’s pocket. The ultimate goal for this project is to scientifically …
Low Power Sigma Delta Converter,
2012
Department of Electrical Engineering, University of Texas at El Paso
Low Power Sigma Delta Converter, Noel P. Martinez, Praveen K. Palakurthi, Eric Macdonald
COURI Symposium Abstracts, Summer 2012
Sub threshold technology allows for circuits to run at their best efficiency with the lowest amount of energy possible. The aim of this research was to combine this technology along with radiation hardness, or the ability for circuits to resist radiation without getting corrupted data. A chip that can convert digital data into analog data (DAC) was created and programmed using verilog, a Hardware Description Language (HDL). With verilog, we created digital data that would eventually be fed into the chip using a field-programmable gate array (FPGA) board. We tested our digital data using a test bench on the computer …
Dynamics Of Non-Thermal Plasma Jets Under Variable Pressure,
2012
Old Dominion University
Dynamics Of Non-Thermal Plasma Jets Under Variable Pressure, Mehmet Arda Akman
Electrical & Computer Engineering Theses & Dissertations
Non-thermal plasma (NTP) jets driven by short DC pulses have attracted the attention of researchers within the past decade due to their promising bio-medical applications in the fields of wound healing, cancer treatment and sterilization. The ability to operate at atmospheric pressure, room temperature and simple device configuration has greatly contributed to their appeal and adoption in the plasma science community. However, the mechanisms that sustain the plasma generation and propagation in ambient air are currently a topic of debate. For instance, what appears as a continuous stream of a plasma plume extending outwards from a plasma device into the …
The Double Pendulum: Construction And Exploration,
2012
California Polytechnic State University - San Luis Obispo
The Double Pendulum: Construction And Exploration, Benjamin J. Knudson
Physics
The exploration of a nonlinear mechanical system, the Double Pendulum, a physical pendulum on the end of a physical pendulum, using analytic and experimental approaches. Also included discussion of the design and construction of the Double Pendulum apparatus to work with Vernier LabPro and LoggerPro. The apparatus outputs live data of the angles to a LoggerPro which collects and produces time evolution graphs as well as a corresponding animation lending itself to comparison with theoretical models. Normal mode frequencies are found both analytically and experimentally for the the general (real) double pendulum. Examples of both simple (periodic) and complex (chaotic) …
Diagnosis Of Breast Cancer By Optical Image Analysis,
2012
Baghdad University
Diagnosis Of Breast Cancer By Optical Image Analysis, Salim J. Attia, Jonathan Blackledge, Ziad M. Abood, I. R. Agool
Conference papers
We consider the process of object detection, recognition and classification in digital optical images of human breast cells with the aim of differentiating between normal and abnormal (cancerous) cells. The work is based on research into the development of a breast cancer screening system that can be used by cytologists to differentiate between benign and malignant types using images that are typical of those currently interpreted by cytologists world-wide. The approach considered is based on feature vectors which are of two types. We consider statistical features such as the mode, median, mean, and standard deviation and features composed of Euclidian …
A Wireless And Digital Electrode Bus Topology For Biopotential Measurement,
2012
Technological University Dublin
A Wireless And Digital Electrode Bus Topology For Biopotential Measurement, Mark Nolan, Edward Burke, Eugene Coyle
Conference Papers
The conventional biopotential measurement configuration utilises long lead wires which connect measuring electrodes to signal conditioning circuitry. The majority of bioelectric signals that are measured from the human body have a tiny signal amplitude (5µV-5mV range) and thus any interference that is induced on the lead wires can have a detrimental effect on the original signal. In this paper, we present an alternative configuration, in which digitisation occurs on the electrode, potentially providing enhanced signal measurement as well as significant benefits in terms of the simplification of the physical interconnections between electrodes. Multiple electrodes are combined to form a digital …
Fabrication And Characterization Of Torsional Micro-Hinge Structures,
2012
California Polytechnic State University, San Luis Obispo
Fabrication And Characterization Of Torsional Micro-Hinge Structures, Mike Madrid Marrujo
Master's Theses
ABSTRACT
Fabrication and Characterization of Torsional Micro-Hinge Structures
Mike Marrujo
There are many electronic devices that operate on the micrometer-scale such as Digital Micro-Mirror Devices (DMD). Micro actuators are a common type of DMD that employ a diaphragm supported by torsional hinges, which deform during actuation and are critical for the devices to have high stability and reliability. The stress developed within the hinge during actuation controls how the actuator will respond to the actuating force. Electrostatically driven micro actuators observe to have a fully recoverable non-linear viscoelastic response. The device consists of a micro-hinge which is suspended by two …
A Study Of Integrated Uwb Antennas Optimised For Time Domain Performance,
2012
Technological University Dublin
A Study Of Integrated Uwb Antennas Optimised For Time Domain Performance, Antoine Dumoulin
Doctoral
Antennas for impulse radio ultra-wideband based portable devices are required to be compact and able to transmit or receive waveforms with minimal distortion in order to support proximity ranging with a centimetre-scale precision. The first part of thesis characterises several pulse types for use in the generation of picosecond-scale signals in respect to the regulatory power and frequency standards while the principles of antenna transient transmission and reception are stated. The proximity effect of planar conductors on the performance of an ultra-wideband antenna is investigated in both spectral and temporal domain demonstrating the relationship between the antenna-reflector separation and the …
Design And Simulation Of Interconnected H-Bridge Inverter,
2012
California Polytechnic State University – San Luis Obispo
Design And Simulation Of Interconnected H-Bridge Inverter, Samuel Muehleck
Computer Engineering
In this project, the research, design and simulation of an interconnected H-bridge single-phase inverter was explored. The inverter design was divided into three separate sections. First, a VHDL programmed CPLD was used to generate control signals for the transistors of the inverter circuit. Second, power electronics was used to create an inverter circuit to change a DC input to a 60 Hz AC output. Lastly, additional circuits were used to link the generated control signals to the MOSFET transistors of the inverter circuit. The operation of the three components was then validated with computer simulations. Results of computer simulation demonstrate …
Design, Construction, And Evaluation Of An Automated Chicken Coop Door,
2012
California Polytechnic State University, San Luis Obispo
Design, Construction, And Evaluation Of An Automated Chicken Coop Door, Kyle Inks
BioResource and Agricultural Engineering
This senior project takes a look into the design, construction, and evaluation of an automated chicken coop door. The idea and need for such a door came from my mother Jan Inks. The parameters for the project include, low production cost, easy installation on existing coops, sleek design, automatically open at a set time in the morning, and automatically close at a set time in the evening.
Energy Harvesting From Elliptical Machines: Dc-Dc Converter Design Using Sepic Topology,
2012
California Polytechnic State University, San Luis Obispo
Energy Harvesting From Elliptical Machines: Dc-Dc Converter Design Using Sepic Topology, Martin Kou
Master's Theses
Cal Poly’s ongoing Energy Harvesting from Exercise Machines (EHFEM) project is a very convenient and cost-effective way for generating DC power from physical exercise and sending it back to the electrical grid as AC power, providing a renewable energy source for the future. The EHFEM project consists of numerous subprojects involving converting different types of exercise machines for power generation. This project is a continuation of one of the previous subprojects, specifically involving an elliptical machine, and focuses on improving system functionality at different machine settings without altering the elliptical user’s experience by selecting a new DC-DC converter design, while …
Surveying First-Year Students Prior Conceptual Understanding Of Direct Current Resistive Electric Circuits: An Update,
2012
Technological University Dublin
Surveying First-Year Students Prior Conceptual Understanding Of Direct Current Resistive Electric Circuits: An Update, Aidan O'Dwyer
Conference papers
There is an increasing diversity of educational background of students entering Level 7 and Level 8 programmes in engineering in Irish third level education. Student reasoning about basic electricity concepts often differs from accepted explanations. The paper reports, analyses and reflects on the results of a multiple-choice diagnostic test to assess student understanding of such concepts (developed by Engelhardt and Beichner (2004) for U.S. high school and college students) taken by four cohorts of students, on the same DIT Level 7 engineering programme, from 2008-12 (n=106) and two cohorts of students, on the same DIT Level 8 engineering programme, from …
Cell Phone Charger For The Dc House Project,
2012
California Polytechnic State University - San Luis Obispo
Cell Phone Charger For The Dc House Project, Andrew Hefner, Antonio Magdaleno
Electrical Engineering
The goal of this project is to create a multiple output cell phone charger for the DC House project. The cell phone charger is essentially a DC-DC converter. The converter takes an input of 48 volts from the outlet in the DC House and decreases the voltage level to 5 volts; the input voltage level of all cellular devices. By designing an isolated flyback converter with initial specification in LTSpice simulation software, a converter was created. By monitoring the input and output voltage and current using the multi-meters and electronic load, we determined the charger to be 71% efficient when …
All-In-One Aprs Transmitter,
2012
California Polytechnic State University - San Luis Obispo
All-In-One Aprs Transmitter, Justin Kenny
Electrical Engineering
The Automatic Packet Reporting System (APRS) is a digital radio system that allows transmission of data using an analog FM radio link. APRS allows position, brief messages, and other data to be distributed across a network, independent of infrastructure, making it ideal for applications such as search and rescue, asset management, and event tracking, while maintaining low cost and operating even when cellular and internet services are unavailable. This project encompasses the design, build, and test of a compact, low-cost APRS transmitter, which will include a 5W radio, GPS, and LCD-based user interface, to allow full utilization of APRS.
Ignitron Trigger Circuit,
2012
California Polytechnic State University – San Luis Obispo
Ignitron Trigger Circuit, John F. O'Hara Iii
Electrical Engineering
No abstract provided.
Pulsed Class-G Rf Amplifier System,
2012
California Polytechnic State University - San Luis Obispo
Pulsed Class-G Rf Amplifier System, Kevin Maulhardt, Kevin Haskett
Electrical Engineering
No abstract provided.
