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Articles 9421 - 9450 of 196020
Full-Text Articles in Engineering
Improved Harmony Search Algorithm For Sdn Controller Placement, Yousra Abdul Alsahib S. Aldeen, Ahmed T. Sadiq, Abeer E. Abed, Omar F. Hussain, Syed Hamid Hussain Madni
Improved Harmony Search Algorithm For Sdn Controller Placement, Yousra Abdul Alsahib S. Aldeen, Ahmed T. Sadiq, Abeer E. Abed, Omar F. Hussain, Syed Hamid Hussain Madni
Iraqi Journal for Computer Science and Mathematics
The Software-Defined Networking (SDN) paradigm decouples the control and the data plane. One of the most significant challenges in this paradigm is SDN controller placement optimization, since improper placement may dramatically influence latency, load balancing, and network resilience. The paper proposes the Improved Harmony Search Algorithm (IHSA) as a new approach for the placement of SDN controllers. To overcome the disadvantages of conventional optimization methods like HSA, GA, and PSO, adaptive parameter tuning, dynamic harmony memory management, and updating rules for enhanced memory are incorporated into the IHSA. The complete simulations of IHSA over small, medium, and large-scale SDN topologies …
Alterations And Improvements Of The Photoacoustic Flow Cytometry Method, Nicholas J. Taylor
Alterations And Improvements Of The Photoacoustic Flow Cytometry Method, Nicholas J. Taylor
Electronic Theses and Dissertations
The emergence and proliferation of antibiotic-resistant bacteria present a significant and growing challenge to global public health, with the potential to render many existing antibiotics ineffective. Infections caused by these resistant pathogens are difficult to treat, resulting in higher morbidity, mortality, and healthcare costs. A major obstacle in combating these infections is the slow pace of traditional diagnostic methods, such as blood cultures, which typically take 2-3 days to identify the causative bacteria and determine their antibiotic resistance profiles. This delay in diagnosis hinders timely interventions and appropriate treatment, further contributing to the spread of resistant infections. As such, there …
The Effects Of Flood Irrigation Vs. Pivot Irrigation On Groundwater Recharge, Tea Rainey
The Effects Of Flood Irrigation Vs. Pivot Irrigation On Groundwater Recharge, Tea Rainey
Graduate Theses & Non-Theses
Groundwater can be an important resource for river flow support, and this is especially true with the Big Hole River in southwestern Montana which is mainly fed by groundwater late in the summer season. Maintaining the source of groundwater is an important focus both for the Big Hole River Watershed Committee as well as local ranchers. Agriculture uses large quantities of water, and as technology advances many ranchers are turning to the use of pivot lines for irrigation. Historically, flood irrigation was used when surface water was available. Surface water sources include tributary streams as well as diversions from the …
Snowmelt Runoff Driven Hydropower Modelling Based On Spaceborne Remotely Sensed And Ground Weather Network Data, Ninad Bhagwat
Snowmelt Runoff Driven Hydropower Modelling Based On Spaceborne Remotely Sensed And Ground Weather Network Data, Ninad Bhagwat
Graduate Theses & Non-Theses
Identification of new optimal hydropower locations provides an opportunity to improve mankind's green energy portfolio by developing new hydroelectric plants, thereby decreasing the carbon footprint. Preliminary analysis of locating the optimal hydropower sites is generally the first step towards construction of a new hydropower plant. In this dissertation, I developed a parsimonious, yet robust tool to perform the preliminary analysis to locate optimal hydropower locations in any watershed using the remotely sensed Digital Elevation Model (DEM). Simulating the snowmelt-derived streamflow is crucial for water resources management in snow-dominated watersheds. The Snowmelt Runoff Model (SRM) is a lumped-parameter, temperature-index model that …
Experiments And Modeling Of Pmu Under Gps Spoofing Attacks, Joshua Afosa-Baffoe
Experiments And Modeling Of Pmu Under Gps Spoofing Attacks, Joshua Afosa-Baffoe
Graduate Theses & Non-Theses
Phasor Measurement Units (PMUs) require an accurate timing signal, which is generally broadcast once per second and communicated to the PMU. While other timing protocols exist, internal clock actively synchronized to GPS time. This GPS dependence creates a potential cybersecurity vulnerability that requires attention. In this thesis, two critical aspects of GPS Spoofing Attacks (GSAs) were investigated. First, laboratory experiments on how a commercial PMU, compliant with the IEEE C37.118 standard, responds to a variety of GSAs. This work examines the ability of PMUs to detect certain spoofing attacks, highlighting cases where detection fails. The characteristic signature of the PMU …
Fenitization Of Mafic Wallrock Associated With Emplacement Of Ree-Rich Carbonatites Of Sheep Creek, Southern Ravalli County, Montana, Tage Young
Graduate Theses & Non-Theses
The Sheep Creek area of southern Ravalli County, Montana, contains numerous small, carbonatite-related deposits rich in niobium (Nb) and rare earth elements (REE). The carbonatite bodies are typically < 2 m wide, strike northeast or east, and dip moderately to steeply to the north. The carbonatites are locally deformed, and are conformable to foliation in the host rocks. The host rocks belong to a 1.37 Ga, bimodal, metaigneous complex consisting of granite/augen gneiss and diabase/amphibolite. When found in close proximity to a mineralized carbonatite body, the mafic wall rock is altered to a fenite assemblage that includes phlogopite, albite or Na-rich plagioclase, calcite ± dolomite, magnetite, and sodic amphiboles (riebeckite, winchite). The mineral transformations are consistent with observed changes in the bulk chemistry of the mafic wall rocks, including consistent increases in K2O, Na2O, and H2O/CO2 and consistent decreases in SiO2 and Al2O3. Relatively minor changes in FeO and MgO were found to take place during the fenitization process. Fenite alteration is most strongly developed adjacent to carbonatites that are strongly mineralized with Nb-REE minerals. Unmineralized carbonatites have fenite zones that are weak or absent. Although the fenites themselves are not strongly enriched in REE, transfer of SiO2 and Al2O3 from the fenites back into the carbonatite bodies may have triggered deposition of REE-rich allanite and other silicate minerals (Ba-feldspar, actinolite, quartz) that are locally abundant in the carbonate lodes. An influx of silica may also have lowered the solubility of REE-phosphate in the carbonatite melts, resulting in deposition of monazite. Most fenites that have been described in previous studies around the world formed by alteration of felsic country rock (granite, gneiss, siliciclastic metasediments). These fenites are rich in alkali feldspar and aegirine, and form conspicuous, pink-colored outcrops that surround the central carbonatite complex. Because the country rock in the Sheep Creek area has a mafic starting composition, the fenites in this study have a completely different mineralogy, being rich in biotite, albite, and matrix calcite. These fenites erode to a crumbly grus soil, do not crop out well, and are therefore easy to miss or ignore in the field. However, recognition of these rocks is important because they are vectors to a nearby mineralized carbonatite.
Designing And Mcat Study App That Updates Automatically And Includes A Novel Goal Of Optomizing A User's Mental Health, Richard Vasquez
Designing And Mcat Study App That Updates Automatically And Includes A Novel Goal Of Optomizing A User's Mental Health, Richard Vasquez
Graduate Theses & Non-Theses
This project investigates the multifaceted role of heart rate variability (HRV) as both a physiological and cognitive marker of human performance, with particular emphasis on its implications for academic preparation and decision- making. Drawing from recent literature, I examine the influence of exercise, sleep quality, stress management, and slow-paced breathing on HRV, highlighting its predictive value for executive function, emotional regulation, and adaptive decision-making. Additionally, the paper introduces a conceptual framework for an educational application that leverages HRV monitoring and breathing interventions such as, resonance breathing to enhance study effectiveness. Additionally, the application will feature a supplemental website to reinforce …
Peroxi-Electrocoagulation For Pfas Mitigation: The Impact Of Water Quality And Dissolved Organic Matter On Removal Pathways, Donald R. Ryan, Claire K. Baldus, Shimaa M. Kteeba, Melvin Samuel, Yin Wang, Laodong Wang, Brooke K. Mayer, Patrick J. Mcnamara
Peroxi-Electrocoagulation For Pfas Mitigation: The Impact Of Water Quality And Dissolved Organic Matter On Removal Pathways, Donald R. Ryan, Claire K. Baldus, Shimaa M. Kteeba, Melvin Samuel, Yin Wang, Laodong Wang, Brooke K. Mayer, Patrick J. Mcnamara
Civil and Environmental Engineering Faculty Research and Publications
The recent addition of per- and polyfluoroalkyl substances (PFAS) to the National Primary Drinking Water Regulation per- has increased the need for research on PFAS treatment technologies for water and wastewater. Electrochemical treatment processes have been widely investigated for PFAS removal. Peroxi-electrocoagulation (electrocoagulation paired with hydrogen peroxide (EC:H2O2)) was evaluated as a novel water treatment process for PFAS mitigation due to the multimechanistic removal pathways that can proceed during treatment, including chemical degradation via oxidation, and physical separation pathways such as sorption to flocs, flotation layer accumulation, and foam fractionation. This work investigated the impacts of …
Evaluating Environmental And Economic Sustainability Of Engineered Chitosan Particles For Water Treatment, Fatima Iqbal, Astha Upadhyay, Rouzbeh Tehrani, Stetson Rowles
Evaluating Environmental And Economic Sustainability Of Engineered Chitosan Particles For Water Treatment, Fatima Iqbal, Astha Upadhyay, Rouzbeh Tehrani, Stetson Rowles
Civil Engineering & Construction: Faculty Publications
The global water demands have prompted the development of sustainable treatment solutions, with adsorptive chitosan composites emerging as promising alternatives to petroleum-based materials. As a cleaner material, chitosan offers significant advantages over conventional adsorbents, including biodegradability, biocompatibility, and the potential to create a circular economy in water treatment applications. This study presents a comprehensive sustainability assessment of three novel porous chitosan particles synthesized using low-toxicity solvents, focusing solely on the production of pure chitosan scaffolds without additional adsorptive materials for targeted removal. Integrating techno-economic analysis and life cycle assessment, we evaluate the economic viability and environmental impact of methylpentane, azocarboxamide, …
Household Point-Of-Use Faucet Filters For Lead Removal: Field Performance And User Experiences, Jeannie M. Purchase, Chantaly Villalona, Adrienne Katner, Kelsey Pieper, Marc Edwards
Household Point-Of-Use Faucet Filters For Lead Removal: Field Performance And User Experiences, Jeannie M. Purchase, Chantaly Villalona, Adrienne Katner, Kelsey Pieper, Marc Edwards
School of Public Health Faculty Publications
Lead certified point of use (POU) faucet filters were field tested in two Louisiana cities in a total of 21 occupied homes during normal use and in two unoccupied homes with very high risk of water lead (Pb) contamination. In an unoccupied home with a 28 m lead service line (LSL) with average lead of 17 μg/L in flushed water, treatment by POU filters generally produced water with < 5 μg/L Pb even when tested to 200% of rated capacity. In the unoccupied home with a disturbed LSL, the water had erratic influent particulate lead of 9-3053 μg/L, and the POUs did not consistently produce water with < 10 μg/L Pb despite very high percentage removals. When testing POUs in occupied homes known to occasionally have lead over 5 μg/L, POUs always reduced lead to < 1 μg/L. In addition, POUs were also effectively removing high levels of iron and manganese present in the water of one city, but this also caused clogging before reaching half of their rated capacity. Laboratory experiments confirmed POU susceptibility to iron clogging.
Untethered Isoperimetric Robotic Truss For Lunar Applications, Mihai Stanciu, Spencer Stowell, Isaac Weaver, Adam Rose, Chris Paul, James Wade, Ashleigh Cerven, Annie O'Bryan, Brian Bodily, Logan Yang, Nathan Usevitch
Untethered Isoperimetric Robotic Truss For Lunar Applications, Mihai Stanciu, Spencer Stowell, Isaac Weaver, Adam Rose, Chris Paul, James Wade, Ashleigh Cerven, Annie O'Bryan, Brian Bodily, Logan Yang, Nathan Usevitch
Faculty Publications
We introduce a robotic system designed to function as a lightweight, modular, and reconfigurable structure on the Moon. This robust system consists of truss-like robotic triangles, each formed by a continuous inflated fabric tube routed through two robotic roller units and a connecting unit. When deflated, these triangles can be compacted to roughly the volume of the roller units, offering an advantageous stowed-to-deployed volume ratio of 1 to 6.24. Upon inflation, the roller units pinch the tubes, creating corners by reducing the bending stiffness of the tube. Once fully deployed, electric motors move the robotic roller units along the tube, …
Nasa Design And Analysis Of Pegda Hydrogels For Microgreen Cultivation In Space, Fabiha Samiha, Luis E. Luna, Kelly Wu, Gabriel Antigua, Artur Abramyan
Nasa Design And Analysis Of Pegda Hydrogels For Microgreen Cultivation In Space, Fabiha Samiha, Luis E. Luna, Kelly Wu, Gabriel Antigua, Artur Abramyan
Publications and Research
Through multiple experiments, Polyethylene Glycol Diacrylate (PEGDA), a biocompatible polymer, has shown potential as a soilless growing medium for microgreens like arugula. However, a challenge arises when the roots run out of space within the hydrogel capsule, pushing the plant out of position and preventing it from absorbing nutrients from the PEGDA.
This study aims to address this challenge by analyzing different 3D-printed mold designs for the creation of the hydrogel capsules. The most promising designs include coil and tree-branch models, which encourage roots to grow in a way that relieves pressure on the leaf side of the plant, helping …
The Crystal Mountain Fluorite Deposit: Scandium-Rich Mineralization And Geochronology, Natalie Kilanowski-Doroh
The Crystal Mountain Fluorite Deposit: Scandium-Rich Mineralization And Geochronology, Natalie Kilanowski-Doroh
Graduate Theses & Non-Theses
The Crystal Mountain fluorite mine is located in the Sapphire Mountains of the Bitterroot National Forest, near Darby, Montana. Crystal Mountain was a significant US producer of high-purity fluorspar between 1952 and 1972. As well, the deposit is rich in yttrium (Y) and scandium (Sc), and could possibly be a domestic source of these critical metals. The ore occurred as lodes of massive fluorite up to 10 m thick and 100 m long (now mined out), with few other associated minerals. Recent studies have speculated that Crystal Mountain may be a rare example of a magmatic fluorspar deposit. The main …
Development Of Predictive Maintenance For Centrifugal Pumps, Elliot B. Lange
Development Of Predictive Maintenance For Centrifugal Pumps, Elliot B. Lange
Honors Capstones
Over prolonged periods of time, mechanical machinery requires regular maintenance to ensure optimal performance. Conventionally this maintenance is done on a regular schedule with predefined procedures to repair all aspects of the machine. As machine learning models become more applicable in everyday life, these algorithms can be leveraged to predict failures in mechanical devices. This project worked toward creating a predictive maintenance machine learning model for centrifugal pumps that can identify and predict discrete failure modes. As a result of the project, a pump loop setup was constructed. The purpose of this report is to provide a guide for how …
Design And Development Of A Stethoscope Attachment For Instant Heart Murmur Detection, Caitlin K. Cherwin, Dillon Desai
Design And Development Of A Stethoscope Attachment For Instant Heart Murmur Detection, Caitlin K. Cherwin, Dillon Desai
Honors Theses
Heart murmurs are critical indicators of potential cardiovascular conditions yet their detection can often go unnoticed due limitations in equipment and is dependent on clinician experience. Cardiovascular disease remains a leading cause of death worldwide, therefore, early detection of heart murmurs play a crucial role in improving patient outcomes. Many established methods of detection are expensive and often unreliable allowing there to be room for a device which is more cost and result effective. This paper presents the development of a device that attaches onto a regular stethoscope and analyzes auscultatory sounds to diagnose the possibility of a present murmur. …
Benefits And Applications Of Learning With Virtual Reality, Michael W. Timm
Benefits And Applications Of Learning With Virtual Reality, Michael W. Timm
Honors Program: Senior Projects (Public)
Education is a fundamental pillar of society. It equips students for employment and interpersonal relations. Virtual reality (VR) has emerged as a transformative technology in the field of education. The aim of this paper is to synthesize existing research in order to determine the benefits of utilizing virtual reality in a variety of education settings, such as K-12 classrooms, universities, and workplace training. This paper observes significant benefits of virtual reality in constructivist and experiential learning, gamified learning, and tailored practice. This analysis also finds that virtual reality is advantageous for educational accessibility, particularly for absentee students and impoverished students. …
Computational Fluid Dynamics Analysis Of A Turbine Blade, Luis Luna, Fabiha Samiha
Computational Fluid Dynamics Analysis Of A Turbine Blade, Luis Luna, Fabiha Samiha
Publications and Research
In Aerospace engineering, the use of computer-aided design (CAD) software, such as SolidWorks, is crucial when designing and validating high-performance parts. SolidWorks provides a valuable tool for simulating computational fluid dynamics (CFD), allowing engineers to analyze and visualize how parts behave under real-world aerodynamic conditions.
One such part is a turbine blade, an airfoil-shaped component inside a jet engine that compresses and redirects airflow to generate thrust. This study aims to perform aerodynamic testing of a single turbine blade design while evaluating SolidWorks' ability to simulate external flow conditions. By visualizing velocity profiles, pressure distribution, and vortex formation, the simulation …
Ecodrone: Autonomous Environmental Monitoring, Belsen Lee
Ecodrone: Autonomous Environmental Monitoring, Belsen Lee
Student Scholar Symposium Abstracts and Posters
This project presents EcoDrone, an autonomous aerial drone designed for continuous and automated environmental monitoring. Current environmental monitoring methods rely on stationary sensors or manual data collection, limiting real-time response capabilities. This reliance leads to delayed, incomplete, and spatially limited data and restricts the ability to capture real-time changes. Another challenge includes the difficulty of environmental monitoring in challenging terrain, whether it be wildfire areas, dense forestry, or mountainous terrain. EcoDrone overcomes these challenges by autonomously navigating difficult terrain to collect real-time data, offering more flexible and timely monitoring than stationary or manual methods. The central research question investigates integrating …
New Signal Identification Algorithms For Enhanced Gamma-Ray Burst Detection In The Advanced Particle-Astrophysics Telescope, Longhao Huang
New Signal Identification Algorithms For Enhanced Gamma-Ray Burst Detection In The Advanced Particle-Astrophysics Telescope, Longhao Huang
McKelvey School of Engineering Graduate Student Theses & Dissertations
This work presents a series of algorithmic advancements aimed at improving photon signal identification and gamma-ray burst (GRB) source localization for the Advanced Particle-astrophysics Telescope (APT) and its Antarctic Demonstrator (ADAPT). These advancements are aimed at identifying valid signals in noisy environments. Previous methods failed to effectively distinguish real photon signals from noise, prompting us to develop a new photon detection algorithm with peak counting. Instead of integrating all waveform data in the observation window, we use multiple thresholds to accurately identify single-photon and two-photon arrival events, minimizing false counts due to amplifier noise. The new peak count algorithm also …
The Role Of Piezo1 In Mediating Chondrocyte Cell Signaling And Senescence, Sophie Gretler Paradi
The Role Of Piezo1 In Mediating Chondrocyte Cell Signaling And Senescence, Sophie Gretler Paradi
McKelvey School of Engineering Graduate Student Theses & Dissertations
Osteoarthritis (OA), the leading cause of disability, is driven by articular cartilage degeneration and inflammation. Mechanosensitive ion channels PIEZO1 and PIEZO2 have been implicated in OA progression via calcium signaling in chondrocytes. This study investigates the role of conditional Piezo channel knockout (cKO) in modulating calcium signaling and senescence in OA, particularly under the supra-physiologic inflammatory condition of a high-fat diet (HFD). Using calcium imaging, we found that Piezo1 cKO and dual Piezo1/2 cKO significantly reduced Yoda1-induced calcium signaling, while Piezo2 cKO alone had no effect. Under HFD conditions, Piezo1 cKO showed a non-significant trend toward reduced calcium influx, potentially …
Structural Controllability For Switched Linear Ensemble Systems, Yi Li
Structural Controllability For Switched Linear Ensemble Systems, Yi Li
McKelvey School of Engineering Graduate Student Theses & Dissertations
No abstract provided.
Development Of Interactive Games On An Affordable Braille Display, Daniel Tsivkovski, Dylan Ravel, Maryam Etezad
Development Of Interactive Games On An Affordable Braille Display, Daniel Tsivkovski, Dylan Ravel, Maryam Etezad
Student Scholar Symposium Abstracts and Posters
Developing an affordable and STEM learning-focused Braille display addresses a significant disparity in the market for Braille displays, where most fail to provide a cost-effective, accessible, and education-oriented solution. This research aims to bridge this gap through innovative hardware and software development, offering a comprehensive learning experience to elementary school children (K-6) who are blind/visually impaired. The hardware features a piezo-electric tactile display that displays up to six Braille characters at once or a shape in an 8x8 pin array configuration. The educational software includes a user-friendly website packed with engaging STEM activities specifically designed for blind/visually impaired children. The …
Towards The Performance Characterization Of A Robotic Multimodal Diagnostic Imaging System, George Papaioannou, Christos Mitrogiannis, Mark Schweitzer, Nikolaos Michailidis, Maria Pappa, Pegah Khosravi, Apostolos Karantanas, Sean Starling, Christian Ruberg
Towards The Performance Characterization Of A Robotic Multimodal Diagnostic Imaging System, George Papaioannou, Christos Mitrogiannis, Mark Schweitzer, Nikolaos Michailidis, Maria Pappa, Pegah Khosravi, Apostolos Karantanas, Sean Starling, Christian Ruberg
Publications and Research
Characterizing imaging performance requires a multidisciplinary approach that evaluates various interconnected parameters, including dosage optimization and dynamic accuracy. Radiation dose and dynamic accuracy are challenged by patient motion that results in poor image quality. These challenges are more prevalent in the brain/cardiac pediatric patient imaging, as they relate to excess radiation dose that may be associated with various complications. Scanning vulnerable pediatric patients ought to eliminate anesthesia due to critical risks associated in some cases with intracranial hemorrhages, brain strokes, and congenital heart disease. Some pediatric imaging, however, requires prolonged scanning under anesthesia. It can often be a laborious, suboptimal …
Review Of Tethered Unmanned Aerial Vehicles: Building Versatile And Robust Tethered Multirotor Uav System, Dario Handrick, Mattie Eckenrode, Junsoo Lee
Review Of Tethered Unmanned Aerial Vehicles: Building Versatile And Robust Tethered Multirotor Uav System, Dario Handrick, Mattie Eckenrode, Junsoo Lee
Faculty Publications
This paper presents a comprehensive review of tethered unmanned aerial vehicles (UAVs), focusing on their challenges and potential applications across various domains. We analyze the dynamic characteristics of tethered UAV systems and address the unique challenges they present, including complex tether dynamics, impulsive forces, and entanglement risks. Additionally, we explore application-specific challenges in areas such as payload transportation and ground-connected systems. The review also examines existing tethered UAV testbed designs, highlighting their strengths and limitations in both simulation and experimental settings. We discuss advancements in multi-UAV cooperation, ground–air collaboration through tethers, and the integration of retractable tether systems. Moreover, we …
Learning-Based Mri Reconstruction Method With Coil Sensitivity Estimation And Prior Adaptation, Haoyu Zhang
Learning-Based Mri Reconstruction Method With Coil Sensitivity Estimation And Prior Adaptation, Haoyu Zhang
McKelvey School of Engineering Graduate Student Theses & Dissertations
Magnetic Resonance Imaging (MRI) reconstruction from undersampled multi-coil k-space data is a challenging inverse problem, typically relying on fixed priors such as precom puted coil sensitivity maps. To improve adaptability, we propose a novel framework named Learning-based Coil sensitivity Estimation and Prior Adaptation (LCEPA). LCEPA formu lates reconstruction as a bilevel optimization, using a Joint Deep Equilibrium (Joint DEQ) model in the inner loop to simultaneously estimate images and coil sensitivity maps, while the outer loop adaptively fine-tunes image and coil priors using supervised data. Experiments demonstrate that LCEPA surpasses state-of-the-art methods in terms of PSNR and SSIM, showcasing robust …
Automated Beam Stitching And Segmentation Procedure For Space Division Multiplexing Optical Coherence Tomography Angiography, Andrew J. Song
Automated Beam Stitching And Segmentation Procedure For Space Division Multiplexing Optical Coherence Tomography Angiography, Andrew J. Song
McKelvey School of Engineering Graduate Student Theses & Dissertations
Optical Coherence Tomography Angiography (OCTA) has revolutionized ophthalmic imaging and its capability to produce high-resolution 3D maps of the retinal microvasculature is instrumental in diagnosing retinovascular diseases such as diabetic retinopathy and age-related macular degeneration; However, the existing OCTA devices often suffer from slow acquisition speed limiting the field-of-view (FOV) in the clinic. Space Division Multiplexing OCTA (SDM-OCTA) address these limitations by acquiring multiple beams simultaneously, achieving manyfold faster acquisition speeds than single beam OCTA systems. But as each beam contains only part of the image, SDM-OCTA requires additional processing steps to produce coherent wide-field images. Though manual stitching and …
Comparative Analysis Of Intrinsic Reward-Based Reinforcement Learning Algorithms, Chengyu Li
Comparative Analysis Of Intrinsic Reward-Based Reinforcement Learning Algorithms, Chengyu Li
McKelvey School of Engineering Graduate Student Theses & Dissertations
Reinforcement learning agents often struggle in tasks with sparse or delayed rewards, since they receive little guidance about which actions to pursue. This thesis investigates how adding intrinsic rewards can help address that issue. We focus on three main methods: Count-Based bonuses, where states are hashed and infrequent states receive higher rewards; Random Network Distillation (RND), where a predictor network learns to match the output of a fixed random target; and the Intrinsic Curiosity Module (ICM), which uses an inverse and a forward model to highlight transitions the agent cannot yet predict.
We implement these approaches under a single Proximal …
Functional Devices Based On Freestanding 2d Materials, Shijue Xu
Functional Devices Based On Freestanding 2d Materials, Shijue Xu
McKelvey School of Engineering Graduate Student Theses & Dissertations
Two-dimensional (2D) materials have attracted extensive attention in the field of nanoelectronics due to their atomic-scale thickness, high surface-to-volume ratio, tunable electronic properties, and compatibility with low-temperature processing. These characteristics make them highly suitable for the construction of emerging device architectures, particularly in both ionic and electronic devices.
In this work, we investigate the application of 2D materials in two distinct classes of devices: ionically-driven memristors and electronically-dominated metal–semiconductor contacts. For the memristor study, we fabricate heterostructure-based resistive switching devices using h-BN and WSe2 as active layers. These 2D material-based memristors exhibit stable power consumption loops and high linearity …
Soft, Adhesive Dry Electrodes For Improved Electrophysiological Signal Acquisition With Motion Tolerance And Long-Term-Recoverability, Ryan Andersen
Soft, Adhesive Dry Electrodes For Improved Electrophysiological Signal Acquisition With Motion Tolerance And Long-Term-Recoverability, Ryan Andersen
McKelvey School of Engineering Graduate Student Theses & Dissertations
Soft electronic devices and sensors have seen substantial interest devoted to them for the purpose of recording and analyzing various electrophysiological signals including for the use of electrocardiography (ECG), electromyography (EMG), and electroencephalography (EEG). Dry electrodes specifically have enormous potential compared to traditional commercial electrodes for long-term, real-time monitoring of biopotential activity. Gel-based commercial electrodes have notable drawbacks such as limited flexibility, skin irritation that decreases comfort, inconsistent signal quality due to poor conformal contact, and degraded signal quality over long-term monitoring due to drying out.
Herein, we report a soft, adhesive dry electrode that utilizes chemical additives to promote …
Adaptive Noise Estimation And Denoising With Deep Learning For Nmr Spectroscopy, Naveen Asokan
Adaptive Noise Estimation And Denoising With Deep Learning For Nmr Spectroscopy, Naveen Asokan
McKelvey School of Engineering Graduate Student Theses & Dissertations
Nuclear Magnetic Resonance (NMR) spectroscopy is a powerful analytical technique widely used for molecular structure elucidation in chemistry, biology, and medicine. However, spectral accuracy is often degraded by noise—particularly in low acquisition time settings—resulting in reduced resolution and obscured chemical features. While traditional noise reduction techniques such as signal averaging can improve spectral quality, they require longer acquisition times, limiting their utility in real-time and high-throughput applications.
This thesis presents a deep learning-based denoising framework designed to enhance the quality of complex-valued NMR spectra. The proposed model, built upon a U-Net architecture, incorporates both real and imaginary components of the …