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Articles 631 - 660 of 1516
Full-Text Articles in Electrical and Computer Engineering
Dark Silicon Aware Multicore Systems: Employing Design Automation With Architectural Insight, Jason M. Allred, Sanghamitra Roy, Koushik Chakraborty
Dark Silicon Aware Multicore Systems: Employing Design Automation With Architectural Insight, Jason M. Allred, Sanghamitra Roy, Koushik Chakraborty
Electrical and Computer Engineering Faculty Publications
The emergence of dark silicon - a fundamental design constraint absent in past generations - brings intriguing challenges and opportunities to microprocessor design. In this brief, we demonstrate the challenges of comparing competing design styles across different technology generations in a dark silicon era. We provide a new metric to guide a dark silicon aware (DSA) system design and propose a stochastic optimization algorithm for DSA multicore system design. Our technique shows 11%-58% and 5.7-5.8 times improvement in energy efficiency for forthcoming technology generations with two multicore design styles: cores with various voltage-frequency domains and cores with heterogeneous microarchitectures. © …
Reading And Wirelessly Sending Eeg Signals Using Arduinos And Xbee Radios To Control A Robot, Andrew Paul Simms
Reading And Wirelessly Sending Eeg Signals Using Arduinos And Xbee Radios To Control A Robot, Andrew Paul Simms
Electrical Engineering Undergraduate Honors Theses
The objective of this project is to develop an EEG device that can read brainwaves from an individual, analyze the data, and use the result to send a wireless signal using Arduinos and XBee Radios to a Boe-bot to perform an action. One of the goals of this project is to read EEG data with a higher sampling frequency than a previously manufactured EEG device. The second part of the project used the device developed to differentiate an individual’s thinking between right and left and then send a simple signal to a robot using an XBee radio to perform an …
Transmission Of Stereo Audio Signals With Lasers, William Austin Curbow
Transmission Of Stereo Audio Signals With Lasers, William Austin Curbow
Electrical Engineering Undergraduate Honors Theses
An alternative method for transmitting audio signals via the use of laser technology was presented here. The primary focus of this document is on the audio amplifier subsystem including the design, simulation, and performance results. Simulations using the PSPICE computer simulation software were utilized to investigate the theoretical designs of the audio amplifier subsystem. The audio amplifier was examined in three junctures including the noise-canceling input stage, the high voltage gain cell, and the low impedance driver. Through the design procedure using theoretical calculations, simulations using PSPICE computer software, and examination of the finished product with an oscilloscope, the audio …
The Synthesis And Characterization Of Copper Indium Sulfide And Cadmium Selenide Nanocrystals And Their Applications In Photodetectors, Zachary T. Bever
The Synthesis And Characterization Of Copper Indium Sulfide And Cadmium Selenide Nanocrystals And Their Applications In Photodetectors, Zachary T. Bever
Electrical Engineering Undergraduate Honors Theses
Semiconductor nanocrystals are a topic of much interest in electrical engineering. Their use has been explored for many applications. This paper investigates the synthesis and characterization of CuInS2 and CdSe nanocrystals. As the nanocrystals were left in reaction for increasing amounts of time, the bandgap of the material decreased as the nanocrystal size increased due to the quantum confinement effect. The CdSe nanocrystals were then investigated in a photodetector application which achieved a detectivity on the order of 10^9 cmHz^(1/2)W^(-1).
Design And Implementation Of A Real-Time Adaptive Oxygen Transfer Rate Estimator, Li Wang
Design And Implementation Of A Real-Time Adaptive Oxygen Transfer Rate Estimator, Li Wang
All Theses
Oxygen transfer rate (OTR) is the most signicant signal for aerobic bioprocess control, since most microbic metabolic activity relies on oxygen consumption. However, accurate estimation of OTR is challenging due to the difficulty of determining uncertain oxygen transfer parameters and system dynamics. This paper presents an adaptive estimator, which incorporates exhaust gas, stir speed and dissolved oxygen measurements, to predict the real-time OTR. The design of this estimator takes into account the headspace dilution effect, off-gas sensor dynamics and uncertain oxygen transfer parameters. Accurate and real-time OTR signal is derived by combining the low latency property of stir speed and …
Security Analysis Of Phasor Measurement Units In Smart Grid Communication Infrastructures, Mehrnaz Sharifian
Security Analysis Of Phasor Measurement Units In Smart Grid Communication Infrastructures, Mehrnaz Sharifian
Department of Computer Electronics and Engineering: Dissertations, Theses, and Student Research
Phasor Measurement Units (PMUs), or synchrophasors, are rapidly being deployed in the smart grid with the goal of measuring phasor quantities concurrently from wide area distribution substations. By utilizing GPS receivers, PMUs can take a wide area snapshot of power systems. Thus, the possibility of blackouts in the smart grid, the next generation power grid, will be reduced. As the main enabler of Wide Area Measurement Systems (WAMS), PMUs transmit measured values to Phasor Data Concentrators (PDCs) by the synchrophasor standard IEEE C37.118. IEC 61850 and IEC 62351 are the communication protocols for the substation automation system and the security …
An Analytical And Experimental Biosensor For Human Mig Using Algan/Gan Based Hemt Devices, Hector Trevino Ii
An Analytical And Experimental Biosensor For Human Mig Using Algan/Gan Based Hemt Devices, Hector Trevino Ii
Theses and Dissertations - UTB/UTPA
An amperometric biosensor using AlGaN/GaN based HEMT devices is constructed experimentally and validated through analytical and numerical techniques for detection of a key protein in allograft rejection (Human MIG/CXCL9). The prototype developed provides a reliable sensing platform that will allow label-free and marker-free detection. By exploiting characteristics unique to AlGaN/GaN based HEMT devices, a floating gate configuration is employed to allow reliable sensing without the need for any reference electrode. Self-assembled monolayers (SAM) are formed at the gate surface by using a crosslinker (DSP) to allow for appropriate immobilization of target antibodies. A theoretical analytical and numerical model is developed …
Ultra-Wideband Position Tracking On An Assembly Line, Harikrishnan Ravikrishnan
Ultra-Wideband Position Tracking On An Assembly Line, Harikrishnan Ravikrishnan
All Theses
This works considers the problem of tracking objects on an assembly line using an ultra-wideband (UWB) positioning system. Assembly line tracking can be accomplished using touch sensors that physically detect when an object reaches a given location. Such tracking requires sensors placed throughout the entire assembly line, and only provides readings at the sensor locations. In contrast, UWB position tracking utilizes a set of sensors surrounding the whole area, enabling continuous position tracking with less infrastructure. Similar tracking can be accomplished using radio frequency identication (RFID) sensing, but this only provides readings when the parts are near RFID readers. The …
Inverse Problems Using Reduced Basis Method, Phil Gralla
Inverse Problems Using Reduced Basis Method, Phil Gralla
All Theses
Inverse Problems is a field of great interest for many applications, such as parameter identification and image reconstruction. The underlying models of inverse problems in many applications often involve Partial Differential Equations (PDEs). A Reduced Basis (RB) method for solving PDE based inverse problems is introduced in this thesis. The RB has been rigorously established as an efficient approach for solving PDEs in recent years. In this work, we investigate whether the RB method can be used as a regularization for solving ill-posed and nonlinear inverse problems using iterative methods. We rigorously analyze the RB method and prove convergence of …
Resource Allocation For Wireless Relay Networks, Hanan Hassan Al-Tous
Resource Allocation For Wireless Relay Networks, Hanan Hassan Al-Tous
Dissertations
In this thesis, we propose several resource allocation strategies for relay networks in the context of joint power and bandwidth allocation and relay selection, and joint power allocation and subchannel assignment for orthogonal frequency division multiplexing (OFDM) and orthogonal frequency division multiple access (OFDMA) systems. Sharing the two best ordered relays with equal power between the two users over Rayleigh flat fading channels is proposed to establish full diversity order for both users. Closed form expressions for the outage probability, and bit error probability (BEP) performance measures for both amplify and forward (AF) and decode and forward (DF) cooperative communication …
Life (Logical Ios Forensics Examiner): An Open Source Ios Backup Forensics Examination Tool, Ibrahim Baggili, Shadi Al Awawdeh, Jason Moore
Life (Logical Ios Forensics Examiner): An Open Source Ios Backup Forensics Examination Tool, Ibrahim Baggili, Shadi Al Awawdeh, Jason Moore
Electrical & Computer Engineering and Computer Science Faculty Publications
In this paper, we present LiFE (Logical iOS Forensics Examiner), an open source iOS backup forensics examination tool. This tool helps both researchers and practitioners alike in both understanding the backup structures of iOS devices and forensically examining iOS backups. The tool is currently capable of parsing device information, call history, voice messages, GPS locations, conversations, notes, images, address books, calendar entries, SMS messages, Aux locations, facebook data and e-mails. The tool consists of both a manual interface (where the user is able to manually examine the backup structures) and an automated examination interface (where the tool pulls out evidence …
Multilayer Nanomagnetic Systems For Information Processing, Srinath Rajaram
Multilayer Nanomagnetic Systems For Information Processing, Srinath Rajaram
USF Tampa Graduate Theses and Dissertations
The Spin-Transfer Torque Magnetoresistive Random Access Memory (STT-MRAM) has opened new doors as an emerging technology with high potential to replace traditional CMOS-based memory technology. This has come true due to the density, speed and non- volatility that have been demonstrated. The STT-MRAM uses Magnetic Tunnel Junction (MTJ) elements as non-volatile memory storage devices because of the recent discovery of spin-torque phenomenon for switching the magnetization states. The magnetization of the free layer in STT-MRAM can be switched from logic "1" to logic "0" by the use of a spin-transfer torque. However, the STT-MRAMs have till now only been used …
Design Of Low Power Alternative Energy Systems With Applications To Experimental Education, Xingjian ‘Harry’ Gao
Design Of Low Power Alternative Energy Systems With Applications To Experimental Education, Xingjian ‘Harry’ Gao
Honors Capstones
No abstract provided.
Mobile Marksman Iv, Nicolas Moreau
A Miniaturized Flexible Surface Attachable Interrogator For Hybrid Optical Fiber Sensing, Yuliya Semenova, Manjusha Ramakrishnan, Ginu Rajan, Tomasz Wolinski, Andrzej Domański, Gerald Farrell
A Miniaturized Flexible Surface Attachable Interrogator For Hybrid Optical Fiber Sensing, Yuliya Semenova, Manjusha Ramakrishnan, Ginu Rajan, Tomasz Wolinski, Andrzej Domański, Gerald Farrell
Articles
In this paper, we propose a miniaturized flexible interrogator for polarimetric and fiber Bragg grating (FBG) sensors based hybrid sensing scheme embedded in composite materials. The flexible interrogation module comprises of an Arrayed Waveguide (AWG) for FBG demodulation and an Electro Optic Mach- Zehnder Interferometric (EO-MZI) intensity modulator for polarimetric sensor demodulation. A customized design of AWG and EO- MZI are presented, and the designed performance resulted in a wide channel spacing of 5 nm and low cross talk of -34 dB between adjacent channels for the AWG, and a low Vπ voltage of ±1.5 Volt for the MZI-EO. The …
Resonant Coupling Of An Infrared Metasurface With Pmma, Michael Francis Finch
Resonant Coupling Of An Infrared Metasurface With Pmma, Michael Francis Finch
Theses and Dissertations
Resonance coupling between a metasurface or planar metamaterial and PMMA’s, polymethyl methacrylate, phonon resonance corresponding to the C=O molecular bond at 1733 cm-1 (52 THz) is investigated. Two metasurfaces, nano rod and nano slot, are modeled using ANSYS HFSS and measured material optical properties for gold and PMMA in inferred spectrum. Both metasurfaces exhibited normal mode splitting also known as avoidance crossing, quantum level repulsion, or vacuum Rabi splitting. Normal mode splitting is shown to be a result of coupling between the PMMA phonon resonance and the resonance of the metasurface. Analytical models, which are tied to physical descriptions, are …
Properties Of Multiferroic Bifeo3 From First Principles, Dovran Rahmedov
Properties Of Multiferroic Bifeo3 From First Principles, Dovran Rahmedov
Graduate Theses and Dissertations
In this dissertation, a first-principle-based approach is developed to study magnetoelectric effect in multiferoic materials. Such approach has a significant predictive power and might serve as a guide to new experimental works. As we will discuss in the course of this work, it also gives an important insight to the underlying physics behind the experimentally observed phenomena.
We start by applying our method to investigate properties of a generic multiferroic material. We observe how magnetic susceptibility of such materials evolves with temperature and compare this evolution with the characteristic behavior of magnetic susceptibility for pure magnetic systems. Then we focus …
Synthesis And Characterization Of Nanocrystals And Their Application For Photodetectors, Ahmad Nusir
Synthesis And Characterization Of Nanocrystals And Their Application For Photodetectors, Ahmad Nusir
Graduate Theses and Dissertations
Room temperature operation is considered one of the essential restrictions in the design of electronic devices. Photodetectors are unable to detect light efficiently at room temperature due to high dark currents. Semiconductor nanocrystals possess unique optical and electrical properties which make them ideal for fabricating uncooled photodetectors. In this project, nanocrystals were synthesized and implemented in devices that detect light at room temperature.
Nanocrystalline I-III-VI2 and II-VI semiconductors (CuInS2 and CdSe) were grown by a wet chemical method, and characterized using: optical absorption, photoluminescence, Raman scattering, and x-ray diffraction. The optical absorption and photoluminescence spectra of the nanocrystals were recorded …
Modeling And Simulation Of Parallel D-Statcoms With Full-Wave Rectifiers, Jason Brinsfield
Modeling And Simulation Of Parallel D-Statcoms With Full-Wave Rectifiers, Jason Brinsfield
Master's Theses
In recent years, both a significant increase in electrical demand and a large influx of intermittent renewable energy sources have put a considerable stress on the nation’s electrical grid. Conventional power flow control techniques such as capacitor banks and tap-changing transformers are incapable of adequately handling the rapid fluctuations in power supply and demand that today’s grid experiences. Flexible AC Transmission System (FACTS) controllers are a practical way to compensate for such rapid power fluctuations. One type of shunt FACTS controller is the Static Synchronous Compensator (STATCOM), which uses fully controllable switches to source or sink reactive power to a …
Low Power Strain Sensor Based On Mos Tunneling Current., Li Zhu
Low Power Strain Sensor Based On Mos Tunneling Current., Li Zhu
Electronic Theses and Dissertations
Sensors, such as pressure sensors, accelerometers and gyroscopes, are very important components in modern portable electronics. A limited source of power in portable electronics is motivating research on new low power sensors. Piezoresistive and capacitive sensing technologies are the most commonly utilized technologies, which typically consume power in the µW to mW range. Tunneling current sensing is attractive for low power applications because the typical tunneling current is in the nA range. This dissertation demonstrates a low power strain sensor based on the tunneling current in a metal-oxide-semiconductor (MOS) structure with a power consumption of a couple of nano-Watts (nW) …
A Review Of The Pinned Photodiode For Ccd And Cmos Image Sensors, Eric R. Fossum, Donald B. Hondongwa
A Review Of The Pinned Photodiode For Ccd And Cmos Image Sensors, Eric R. Fossum, Donald B. Hondongwa
Dartmouth Scholarship
The pinned photodiode is the primary photodetector structure used in most CCD and CMOS image sensors. This paper reviews the development, physics, and technology of the pinned photodiode.
Nano-Ionic Redox Resistive Ram – Device Performance Enhancement Through Materials Engineering, Characterization And Electrical Testing, Muhammad Rizwan Latif
Nano-Ionic Redox Resistive Ram – Device Performance Enhancement Through Materials Engineering, Characterization And Electrical Testing, Muhammad Rizwan Latif
Boise State University Theses and Dissertations
In recent years, Redox Conductive Bridge Memory (RCBM), which falls in the Resistive Random Access Memory (RRAM) category, has gained considerable attention as one of the promising candidates for future generation non-volatile memory due to its advantages over Flash memory as it offers high density, low operating power, fast read/write operation, and compatibility with conventional CMOS process. Currently research is being conducted to improve the reliability of the RCBM devices, which are comprised of an insulating material, also known as active layer, sandwiched between two metal electrodes. The main working mechanism of these devices is based on the resistance change …
On Over-Determined Frequency Domain Bss, Christopher Osterwise, Steven L. Grant
On Over-Determined Frequency Domain Bss, Christopher Osterwise, Steven L. Grant
Electrical and Computer Engineering Faculty Research & Creative Works
This paper introduces two new frequency domain overdetermined blind source separation (BSS) algorithms: Inter-frequency Correlation with Microphone Diversity (ICMD), and ICA with Triggered Principal component analysis (ITP). In the first, we consider different sets of microphones, where in each set the number of microphones and sources are equal. In the second, we extract principal components from an overdetermined mixture to form a determined mixture for separation. Both techniques utilize inter-frequency correlation to align permutations via energy profiles. Both monitor the condition number of an inter-frequency cross-correlation matrix of the normalized de-mixed signals' envelopes to determine if separation has failed for …
On Uniformly Most Powerful Decentralized Detection, Uri Rogers
On Uniformly Most Powerful Decentralized Detection, Uri Rogers
Boise State University Theses and Dissertations
The theory behind Uniformly Most Powerful (UMP) composite binary hypothesis testing is mature and well defined in centralized detection where all observations are directly accessible at one central node. However, within the area of decentralized detection, UMP tests have not been researched, even though tests of this nature have properties that are highly desirable. The purpose of this research is to extend the UMP concept into decentralized detection, which we define as UMP decentralized detection (UMP-DD). First, the standard parallel decentralized detection model with conditionally independent observations will be explored. This section will introduce theorems and corollaries that define when …
Distributed Formation Tracking Control Of Multiple Car-Like Robots, Chunyu Chen
Distributed Formation Tracking Control Of Multiple Car-Like Robots, Chunyu Chen
Theses and Dissertations - UTB/UTPA
In this thesis, distributed formation tracking control of multiple car-like robots is studied. Each vehicle can communicate and send or receive states information to or from a portion of other vehicles. The communication topology is characterized by a graph. Each vehicle is considered as a vertex in the graph and each communication link is considered as an edge in the graph. The unicycles are modeled firstly by both kinematic systems. Distributed controllers for vehicle kinematics are designed with the aid of graph theory. Two control algorithms are designed based on the chained-form system and its transformation respectively. Both algorithms achieve …
A Remote Capacity Utilization Estimator For Wlans, Yi Ding
A Remote Capacity Utilization Estimator For Wlans, Yi Ding
Doctoral
In WLANs, the capacity of a node is not fixed and can vary dramatically due to the shared nature of the medium under the IEEE 802.11 MAC mechanism. There are two main methods of capacity estimation in WLANs: Active methods based upon probing packets that consume the bandwidth of the channel and do not scale well. Passive methods based upon analyzing the transmitted packets that avoid the overhead of transmitting probe packets and perform with greater accuracy. Furthermore, passive methods can be implemented locally or remotely. Local passive methods require an additional dissemination mechanism in order to communicate the capacity …
High-Speed Delta-Sigma Data Converters For Next-Generation Wireless Communication, Sakkarapani Balagopal
High-Speed Delta-Sigma Data Converters For Next-Generation Wireless Communication, Sakkarapani Balagopal
Boise State University Theses and Dissertations
In recent years, Continuous-time Delta-Sigma(CT-ΔΣ) analog-to-digital converters (ADCs) have been extensively investigated for their use in wireless receivers to achieve conversion bandwidths greater than 15 MHz and higher resolution of 10 to 14 bits. This dissertation investigates the current state-of-the-art high-speed single-bit and multi-bit Continuous-time Delta-Sigma modulator (CT-ΔΣM) designs and their limitations due to circuit non-idealities in achieving the performance required for next-generation wireless standards. Also, we presented complete architectural and circuit details of a high-speed single-bit and multi-bit CT-ΔΣM operating at a sampling rate of 1.25 GSps and 640 MSps respectively (the highest reported sampling rate in a 0.13 …
Seeking Cleaner Air - Accessible Air Quality Monitoring And Event Diagnosis, James Allen Hall Jr.
Seeking Cleaner Air - Accessible Air Quality Monitoring And Event Diagnosis, James Allen Hall Jr.
Boise State University Theses and Dissertations
Airborne particulate matter has been shown to be associated with morbidity and mortality, and can have a detrimental impact on sensitive materials and processes. Understanding the levels and movements of particulate matter in an enclosed space can lead to a reduction in the negative consequences of poor air quality. A system of environmental sensors including particulate matter, selected gases, and other atmospheric factors can be used to provide a real-time assessment of air quality. This assessment can be used to assist in the diagnosis of the source of particulate matter. This dissertation describes the creation of a framework for the …
A Reliability Prediction Method For Phase-Change Devices Using Optimized Pulse Conditions, Martin Jared Barclay
A Reliability Prediction Method For Phase-Change Devices Using Optimized Pulse Conditions, Martin Jared Barclay
Boise State University Theses and Dissertations
Owing to the outstanding device characteristics of Phase-Change Random Access Memory (PCRAM) such as high scalability, high speed, good cycling endurance, and compatibility with conventional complementary metal-oxide-semiconductor (CMOS) processes, PCRAM has reached the point of volume production. However, due to the temperature dependent nature of the phase-change memory device material and the high electrical and thermal stresses applied during the programming operation, the standard methods of high-temperature (Temperature > 125 °C) accelerated retention testing may not be able to accurately predict bit sensing failures or determine slight pulse condition changes needed if the device were to be …
Simulation Of Thermal Transit-Time Flow Meter For High Temperature, Corrosive And Irradiation Environment, Elaheh Alidoosti
Simulation Of Thermal Transit-Time Flow Meter For High Temperature, Corrosive And Irradiation Environment, Elaheh Alidoosti
UNLV Theses, Dissertations, Professional Papers, and Capstones
In the environments of high temperature (300o C - 1000o C), corrosive and even irradiation application, the challenges of providing reliable and accurate flow rate measurement is significant. In comparing with many other existing technologies for normal operation environments, correlated thermal transit-time flow meter show its advantages of resolving the challenges encountered in those harsh conditions. The correlated thermal signals can be detected by two separated thermal sensors (for example, thermocouples) in series alignment along the pipe, and derive the flow rate. It was evaluated to have accurate measurement for small pipe at slow fluid speed. In the higher flow …