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Articles 211 - 240 of 30002
Full-Text Articles in Engineering
Tracking Continuous Non-Differentiable Trajectories In Euler–Lagrange Systems With Continuous Dynamics, Nilay Kant
Tracking Continuous Non-Differentiable Trajectories In Euler–Lagrange Systems With Continuous Dynamics, Nilay Kant
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Tracking controllers for Euler–Lagrange systems are designed under the assumption that reference trajectories are continuous, and at least twice differentiable with respect to time. However, this assumption precludes several use cases, such as when a robot end-effector must track a path with corners at constant speed. This paper introduces the control design for tracking continuous but non-differentiable trajectories in fully actuated Euler–Lagrange systems that have continuous-time dynamics. The proposed controller combines a continuous feedback law with impulsive inputs, that are intermittently applied at the instants of non-differentiability. A Lyapunov stability analysis establishes global exponential convergence of the tracking error to …
A Carbon Fiber-Based Self-Sensing Approach For Monitoring Damage Evolution In Coal Pillars, Shan Ning, Weibing Zhu, Jie Gao, Wei Qin, Guang Xu, Jingmin Xu
A Carbon Fiber-Based Self-Sensing Approach For Monitoring Damage Evolution In Coal Pillars, Shan Ning, Weibing Zhu, Jie Gao, Wei Qin, Guang Xu, Jingmin Xu
Mechanical and Aerospace Engineering Faculty Research & Creative Works
Under long-term high stress and dynamic disturbances, damage accumulation within underground coal masses can induce sudden instability, posing a considerable threat to coal mine safety. Real-time acquisition of coal damage information is essential for disaster prevention and control. This study proposes a coal damage and fracturing monitoring approach based on a carbon fiber composite mortar (CFCM) coating. By applying the CFCM coating to coal specimen surfaces and monitoring resistance changes, the dynamic evolution of damage can be tracked. The study combines experimental mechanical loading, continuous electrical resistance monitoring and acoustic emission recording with detailed numerical modelling to comprehensively evaluate sensing …
Evaluation Of The Effect Of Vibration On Signal Reflection In Coaxial Cable Connectors For Vibration Sensing In Aircraft Structures And Systems, Saidanvar Esanjonovich Valiev, Anthony C. Okafor, Jeremiah J. Rittenhouse, Daniel S. Stutts, Jie Huang
Evaluation Of The Effect Of Vibration On Signal Reflection In Coaxial Cable Connectors For Vibration Sensing In Aircraft Structures And Systems, Saidanvar Esanjonovich Valiev, Anthony C. Okafor, Jeremiah J. Rittenhouse, Daniel S. Stutts, Jie Huang
Mechanical and Aerospace Engineering Faculty Research & Creative Works
This paper investigates the effects of vibration on signal reflection (S11) in aerospace data transmission line (ADTL) and commercial data transmission line (DTL) connectors for their alternative use as vibration sensors. The impact of vibration on the S11 signal was investigated on five ADTL and four DTL connectors at six vibration frequencies (20 Hz, 40 Hz, 80 Hz, 160 Hz, 320 Hz, and 640 Hz) and four vibration accelerations (0.5G, 1 G, 2 G, and 4G). The experiment was conducted using a split-plot design with a cable type assigned as the main-plot factor, with vibration frequency and acceleration as subplot …
Sanitizing Manufacturing Dataset Labels Using Vision-Language Models, Nazanin Mahjourian, Vinh Nguyen
Sanitizing Manufacturing Dataset Labels Using Vision-Language Models, Nazanin Mahjourian, Vinh Nguyen
Michigan Tech Publications
The success of machine learning models in industrial applications is heavily dependent on the quality of the datasets used to train the models. However, large-scale datasets, especially those constructed from crowd-sourcing and web-scraping, often suffer from label noise, inconsistencies, and errors. This problem is particularly pronounced in the manufacturing domain, where obtaining high-quality labels is costly and time-consuming. This paper introduces Vision-Language Sanitation and Refinement (VLSR), which is a vision-language-based framework for label sanitation and refinement in multi-label manufacturing image datasets. This method embeds both images and their associated textual labels into a shared semantic space leveraging the CLIP vision-language …
Project Strata, Hobbs Hegedus, Antony Chen, Adrian Scancich, Peter Constantine Psefteas, Ryan Kreis Roth, Jack Douglas Mitchell
Project Strata, Hobbs Hegedus, Antony Chen, Adrian Scancich, Peter Constantine Psefteas, Ryan Kreis Roth, Jack Douglas Mitchell
Mechanical Engineering
Project STRATA is a lunar sample acquisition and storage system developed in support of NASA’s Artemis mission objectives and the 2026 NASA RASC-AL competition. The overall mission concept utilizes a dual-rover architecture consisting of HARVEST, a sample collection rover, and SILO, a storage rover designed to preserve and organize lunar ice-regolith core samples collected from permanently shadowed regions (PSRs) near the lunar south pole. These regions contain scientifically valuable volatile-rich materials but present significant challenges due to extreme cryogenic temperatures, abrasive lunar regolith, and the absence of solar energy.
This report is a collection of all major work from the …
Custom Animatronic Puppet, Jake Schuman, Fredy Herrarte, Madison Reedy, Jackson Reynolds
Custom Animatronic Puppet, Jake Schuman, Fredy Herrarte, Madison Reedy, Jackson Reynolds
Mechanical Engineering
This project involved the design, fabrication, and implementation of a custom audio-animatronic puppet modeled after Dr. Brian Davis for the California Polytechnic State University Mechanical Engineering Department. The objective was to create an expressive, lifelike character capable of synchronized speech, head movement, arm gestures, and seated-to-standing motion while demonstrating the integration of mechanical design, controls, manufacturing, and artistic fabrication.
The final system consists of an 18-degree-of-freedom animatronic platform utilizing servo-driven facial and upper-body actuation combined with a pneumatic standing mechanism. A modular aluminum and 3D-printed structural framework was developed using SolidWorks and validated through engineering analysis. Character shells were digitally …
Compressor Rotor Joints And Interference Fit Study, Isabela Jimenez, Aubrey Perez, Isaiah Guerrero, Jireh Velasquez
Compressor Rotor Joints And Interference Fit Study, Isabela Jimenez, Aubrey Perez, Isaiah Guerrero, Jireh Velasquez
Mechanical Engineering
Solar Turbines need a comprehensive study on the effects axial and radial inference fits have on turbine compressor rotor stiffness. The aft weldment of the compressor has press-fit dowel pins and pilot joints to connect one weldment section to another. These fits need to be assessed through a finite element modal analysis, as well as practically tested through modal impacts to investigate how the fits affect the stiffness of the turbine’s connected weldments. The experimental data will be used to validate the finite element analysis (FEA) model.
Raytheon Rtx Autonomous Vehicle Competition (Avc) - Unmanned Ground Vehicle (Ugv), Bryant Jonathan Martinez-Bautista, Geovanni Lara, Jared Herrera, Jose Barrera
Raytheon Rtx Autonomous Vehicle Competition (Avc) - Unmanned Ground Vehicle (Ugv), Bryant Jonathan Martinez-Bautista, Geovanni Lara, Jared Herrera, Jose Barrera
Mechanical Engineering
Raytheon RTX has four universities participating in a competition to successfully complete various challenges with a UAV and UGV including navigation and landing. The students must work collaboratively to integrate and manufacture a working UGV that is compatible with the UAV.
Our sponsor is Raytheon, more specifically Mr. Luis Esparza. Important stakeholders also include Cal Poly and the entire team of ME & CPE working on the project. Raytheon and Luis are looking for innovative solutions that can be applied for real world scenarios where UAV’s and UGV’s are applied. Cal Poly is gaining recognition, and the team is gaining …
Peltier-Based Hydration Accumulation Terminal (P.H.A.T.), Jenner Mucher, Ethan Pace, Renee Robolledo, Sabrina Luo, Taehoon Lee, Tarsem Pal
Peltier-Based Hydration Accumulation Terminal (P.H.A.T.), Jenner Mucher, Ethan Pace, Renee Robolledo, Sabrina Luo, Taehoon Lee, Tarsem Pal
Mechanical Engineering
The objective of this project is to design an innovative potable water dispenser capable of safely delivering hot, ambient, and chilled water on demand for human lander missions. The system will support astronauts’ hydration and food rehydration needs while minimizing mass, power, maintenance, and contamination risks in microgravity and partial-gravity environments. Current spacecraft dispensers, such as the International Space Station (ISS) system, provide only heated water and have limited temperature control, cleaning accessibility, and microbial resilience. Building on NASA heritage designs and lessons learned from the ISS Potable Water Dispenser, this project advances a lighter, simpler, and more energy-efficient concept …
Mass - Modular Acoustic Suppression System, Julia Megargle, Michael A. Milner, Lucas Kaemmererer, Jonathan Corvera, Gabriel Choi, Emmi Cayer
Mass - Modular Acoustic Suppression System, Julia Megargle, Michael A. Milner, Lucas Kaemmererer, Jonathan Corvera, Gabriel Choi, Emmi Cayer
Mechanical Engineering
The Modular Acoustic Suppression System (MASS) is a mass tuned damper that reverberates a membrane atop a cavity to absorb select acoustic frequencies produced by the Environmental Control and Life Support Systems (ECLSS) within NASA's Artemis Human Lander. The height of the reverberation chamber is adjusted to mitigate a range of varying tonal frequencies within the human lander.
Electronic Bike Chopper, Caleb S. Bermack, Joey Lederer, Ethan Dea, Evan Herrera, Fred Agregado
Electronic Bike Chopper, Caleb S. Bermack, Joey Lederer, Ethan Dea, Evan Herrera, Fred Agregado
Mechanical Engineering
Our sponsor, David Royce, built an initial e-bike chopper prototype and desired an improved, next generation version. Our team designed and manufactured an electric bicycle to achieve the rugged visual style of a classic chopper motorcycle while improving stability and usability. The team built a functional E-Chopper prototype using a 4130 steel frame, custom dropouts, a long front fork, wide rear tire, ape-hanger handlebars, and prebuilt electric components such as the battery, hub motor, controller, throttle, and display. The design focused on reducing excess weight, improving frame rigidity, and meeting California e-bike regulations.
Me3328 Buckling Lab, Willem Bitterolf, Samantha Flores, Jacy Gonsalves, Brooke Thompson
Me3328 Buckling Lab, Willem Bitterolf, Samantha Flores, Jacy Gonsalves, Brooke Thompson
Mechanical Engineering
The objective of this senior design project is to design and develop an instructional buckling apparatus (hereafter referred to as a “buckling tester”) to enhance student comprehension of column buckling behavior through direct experimental investigation. The apparatus is specifically intended to bridge the gap between theoretical predictions and observed physical response of structural column members subjected to axial compressive loading. In particular, the system will allow students to examine how column behavior transitions between Euler’s elastic buckling theory, which governs long, slender columns, and the Johnson parabolic formula, which more accurately describes intermediate and shorter columns influenced by material yielding. …
Buell Motorcycle Extended Swing Arm, Joseph Camuccio, Riley Clark, Vincent Sclimenti, Tristan Turcios
Buell Motorcycle Extended Swing Arm, Joseph Camuccio, Riley Clark, Vincent Sclimenti, Tristan Turcios
Mechanical Engineering
Buell motorcycle riders, including our sponsor Rick Lasko, need a way to easily and affordably manufacture and replace their swing arms with extended versions (4”, 8”, 12”, and 16”) that maintain the stock Buell aesthetic while also meeting the safety standards required for performance-intensive applications, such as drag racing. Each extended swing arm must be just as safe, strong, and rigid as the original swing arm. Currently, there is no convenient and affordable solution to this problem, which is why our sponsor, Rick Lasko, wanted a validated, repeatable manufacturing process and design that would allow riders to safely and consistently …
Guitar Pickup Testing Fixture, Koen Graue, Ethan Rezentes, Max Schecter, Timothy Webb
Guitar Pickup Testing Fixture, Koen Graue, Ethan Rezentes, Max Schecter, Timothy Webb
Mechanical Engineering
Small guitar pickup manufacturers and hobbyists have an interest in developing guitar pickups with unique tonal characteristics and responses, but currently lack a reliable way to test these pickups and characterize their sound. I.M. Bohannon Mechanical Design approached the team to develop a solution to this problem. In response, the team researched current technologies, customer needs, and existing products on the market to define the scope and requirements for a guitar pickup testing fixture. This report documents the work completed during the project scope and definition phase of Cal Poly's senior project process. It discusses researched topics and existing solutions, …
Autonomous Vision-Based Litter Collection Rover, Dante Michael Benedetti, Benjamin Scott Tavares, Nathan Heil
Autonomous Vision-Based Litter Collection Rover, Dante Michael Benedetti, Benjamin Scott Tavares, Nathan Heil
Electrical Engineering
This report documents the design, implementation, and testing of an autonomous litter-collection rover developed as a Senior Project Design Lab (EE 460/463/464) at California Polytechnic State University. The rover integrates autonomy, computer vision, embedded real-time control, mecanum-wheel omnidirectional mobility, and a two-degree-of-freedom robotic arm to detect, approach, and collect small ground-level litter such as bottles, wrappers, and paper fragments.
The system uses a two-layer compute architecture: an NVIDIA Jetson Orin Nano running ROS 2 for perception, SLAM, and path planning, paired with an STM32L4A6ZG microcontroller for real-time motor control and odometry. The robot is built on a multi-level aluminum frame …
Hospital Bed Tray Table, Ava Mikeska, Sara Chamness, Samantha Kenney, Kaitlyn Ould
Hospital Bed Tray Table, Ava Mikeska, Sara Chamness, Samantha Kenney, Kaitlyn Ould
Mechanical Engineering
This project documents the design and development of a collapsible hospital bed tray table created through the Mechanical Engineering Senior Project program at Cal Poly, San Luis Obispo. The goal of the project was to reduce the floor space occupied by existing overbed tray tables while preserving the functionality, stability, and durability expected by patients, visitors, and healthcare staff.
The final design modifies a commercially available overbed tray table by incorporating a folding tabletop hinge mechanism and a telescoping base. The hinge allows the tabletop to lock in both the upright and stowed positions, while the telescoping base retracts to …
Thermosiphon Lab Experiment, Ella C. Perry, Zach Barry, Madison K. Felton, Lane A. Hunter
Thermosiphon Lab Experiment, Ella C. Perry, Zach Barry, Madison K. Felton, Lane A. Hunter
Mechanical Engineering
The Cal Poly Mechanical Engineering Department aims to develop a new lab centered on a thermosiphon solar system. This lab will introduce the operating principles of thermosiphons while integrating concepts from heat transfer, fluid dynamics, and thermodynamics. A thermosiphon functions by heating water using thermal energy. The lab will examine the efficiency of this energy transfer. The final lab will be tailored to enhance student learning while ensuring ease of use for the Mechanical Engineering Department.
Semi-Automated Wine Barrel Filler, Elliot Jason Dejong, Carlo Caesare Deianni, Brady Emerson J. Leib
Semi-Automated Wine Barrel Filler, Elliot Jason Dejong, Carlo Caesare Deianni, Brady Emerson J. Leib
Mechanical Engineering
The proposed project is a semi-automated wine barrel filler. Currently, there is no streamlined and affordable method for smaller wineries to fill wine barrels without dedicating complete focus to the task. The primary use is controlled filling for white wine fermentation, during which an air gap must be left in the barrel to allow for expansion of the wine during fermentation. Tom Greenough, Saucelito Canyon’s head winemaker, and associate winemaker Bodie Ringhofer are the primary stakeholders in our project and want to consistently fill barrels at their winery to a fluid volume of approximately 50 gallons each. This project serves …
Desktop Dynamometer, Ryan Boister, Zachary Chung, Molly Koretz, Tyler Lum
Desktop Dynamometer, Ryan Boister, Zachary Chung, Molly Koretz, Tyler Lum
Mechanical Engineering
This senior project presents the design and development of a desktop dynamometer for measuring the performance of small electric motors. The system integrates torque and speed measurement with data acquisition hardware to calculate power output and evaluate motor performance. The compact and cost-effective design provides a practical platform for engineering education, testing, and performance characterization of small-scale power systems.
25-26 Mecc: Magnetic Thread Wave Energy Converter, Adolfo Torres Flores, Maya Malay, Grayson Houghton, Chase Eavis, Ramyasree Kaja, Tyler Chin, Malia Merager, Chad Haines, Noah Borkum, Raina Moore
25-26 Mecc: Magnetic Thread Wave Energy Converter, Adolfo Torres Flores, Maya Malay, Grayson Houghton, Chase Eavis, Ramyasree Kaja, Tyler Chin, Malia Merager, Chad Haines, Noah Borkum, Raina Moore
Mechanical Engineering
Remote coastal Alaskan villages face significant challenges accessing reliable and affordable electricity due to their geographic isolation and limited connection to central energy grids. These communities often depend on expensive and environmentally unsustainable diesel generators which are difficult to supply and operate. They require a new renewable, affordable, minimal maintenance power solution to decrease their reliance on fossil fuels and promote sustainable development in the region. Although several wave energy converters exist, none adequately suit the needs of these coastal villages, therefore a new design is required to support them. This project will be undertaken by three interdisciplinary teams made …
Smart Sleeve, Evan Abalos, Bright Jung, Owen Bowling, Wyatt Eberhart
Smart Sleeve, Evan Abalos, Bright Jung, Owen Bowling, Wyatt Eberhart
Mechanical Engineering
Quantifying human arm muscle activity is essential for understanding human movements and helping individuals who suffer from motor or neurological impairments such as stroke or traumatic brain injuries. Today, these individuals, as well as clinicians, researchers, and athletes, face many challenges when using the traditional surface electromyography (sEMG) systems to monitor muscle activities, including complex setup, restricted mobility, discomfort, inconsistent placement of electrodes, and lack of accuracy. Therefore, a comfortable EMG sleeve device that accurately measures arm movement without interfering with daily tasks is needed, which the team will be designing, manufacturing, and testing as their senior project. In addition, …
Me Department Bespoke Coffee Cabinet, Mickie Clyne, Stephen Tamacheepjaroen, Samuel Johnson, Willem Gray
Me Department Bespoke Coffee Cabinet, Mickie Clyne, Stephen Tamacheepjaroen, Samuel Johnson, Willem Gray
Mechanical Engineering
This senior project involved the design, fabrication, and testing of a custom coffee cabinet for the California Polytechnic State University Mechanical Engineering Department. The project addressed challenges associated with appliance organization, storage efficiency, accessibility, and maintenance within the department’s shared breakroom space. A human-centered design process was used to identify stakeholder needs and develop engineering specifications for the final product.
The completed cabinet integrates custom woodworking, steel pipe frame construction, dedicated K-Cup storage, organized appliance placement, and a rack-and-pinion sliding platform that improves access to the Keurig coffee maker for refilling and maintenance. Design decisions were informed through stakeholder feedback, …
Mobile Transfer Assist (Mta) Device, Ashley Homuth, Garrett Schnack, Will Bruner, Jacob Flores
Mobile Transfer Assist (Mta) Device, Ashley Homuth, Garrett Schnack, Will Bruner, Jacob Flores
Mechanical Engineering
The Mobile Transfer Assist (MTA) device was developed to assist caregivers with seated-to-seated transfers while reducing physical strain. The device uses a manually operated hand winch and pulley system to raise a user into a semi-standing position, allowing safe transfer between locations. The final design emphasizes portability, affordability, ease of use, and user safety through a modular frame, transfer sling, knee supports, and locking caster wheels. A verification prototype was fabricated and tested, demonstrating successful operation and compliance with project requirements established by VTC Santa Maria.
Hydropower Collegiate Competition 2026, Andres R. Arreola, Sammy D. Taporco, Kathryn E. Tinney, Ahmer S. Dhillon
Hydropower Collegiate Competition 2026, Andres R. Arreola, Sammy D. Taporco, Kathryn E. Tinney, Ahmer S. Dhillon
Mechanical Engineering
The Hydropower Collegiate Competition (HCC) is sponsored by the Department of Energy’s (DOE) Water Power Technologies Office (WPTO) and is meant to offer university students an opportunity to solve complex hydropower challenges, build industry connections, explore career connections, and obtain a greater knowledge of hydropower’s potential in the United States. For this year’s competition, our team investigated a potential in-conduit hydropower site in California. Our work included creating a design package for a crossflow turbine related to our selected site and completing the community connections challenge. We also completed a siting and design report, community connections report, design and siting …
Clipped - A Clipless Bike Grip System, Colin P. Root, Jay Vaughan, Austin Mills, Oscar Weir
Clipped - A Clipless Bike Grip System, Colin P. Root, Jay Vaughan, Austin Mills, Oscar Weir
Mechanical Engineering
This bike grip system works by connecting a magnetic brace to magnetic pucks installed on handlebars to secure the rider. The brace is affixed inside a glove and connects to two retractable pucks to secure a rider using magnetic force only.
Process Improvement For Thermal Barrier Coating Masking Applications, Katherine Meezan, Aiden Senn, Saksham Giri, Katelyn Perez
Process Improvement For Thermal Barrier Coating Masking Applications, Katherine Meezan, Aiden Senn, Saksham Giri, Katelyn Perez
Mechanical Engineering
Solar Turbines, a gas turbine manufacturer, needs a more efficient method to prevent the application of a thermal barrier coating (TBC) to select areas of their combustion liners during manufacturing. Currently, the process is labor, material, and time intensive: reusable masking tools should increase the efficiency of the TBC process.
This project is sponsored in full by Solar Turbines, and is under the guidance and administration of three Solar Turbines engineers: Chris Noone, Rick Rogers, and Carson Roff. The project is mentored by Cal Poly senior design Coach, Rick Lasko. This project will be completed by a team of four …
Me3328 Combined Loading Beam Bending Lab, Alejandro Islas, Viswesh Vancheeswaran, Owen Spencer, Henry Andrews
Me3328 Combined Loading Beam Bending Lab, Alejandro Islas, Viswesh Vancheeswaran, Owen Spencer, Henry Andrews
Mechanical Engineering
Serving as a new laboratory experiment for ME 3328 (Design for Strength & Stiffness), strain gauges were adhered, wired, and calibrated on a cantilever beam lab apparatus capable of undergoing pure bending, pure torsion, and combined bending.
Implementation Of A Line-Scan Camera Triangulation Sensor For A Ball Balancer, Jackson R. Mclaughlin
Implementation Of A Line-Scan Camera Triangulation Sensor For A Ball Balancer, Jackson R. Mclaughlin
Master's Theses
Ball Balancer or Ball on Plate systems are used for education and research in control theory. These consist of a plate which can be actively tilted, with a ball rolling on the surface. Students are challenged to model the dynamics of the system and implement a control loop which is capable of stabilizing the ball by actuating the plate. The mechatronics group at Cal Poly is developing hardware for one of these ball-balancer systems, for future use in the Mechanical Engineering curriculum.
The position of the ball relative to the plate must be measured in order to control and stabilize …
Electric Vehicle Charging Station Project, Fangling Zhu
Electric Vehicle Charging Station Project, Fangling Zhu
2026 Spring Reports (Terre Haute)
The electronic vehicle (EV) charging station project was developed through a partnership between BUS 205 Business Statistics at Indiana State University and the City of Terre Haute as part of the Sustainable Cities Program. The city’s goal for this project is associated with the Theme: resilient infrastructure. The strategy RI-1 is to create a more resilient power grid. Terre Haute, aiming to advance sustainability and reduce emissions amidst growing EV adoption, faces challenges of limited charging infrastructure. Students work in four different groups and explore the optimization location for EV charging stations in the City of Terre Haute. The students …
Simulation Of Powder Spreading For Metal Additive Manufacturing, Florence Duff
Simulation Of Powder Spreading For Metal Additive Manufacturing, Florence Duff
Master's Theses
The powder recoating process for Laser Powder Bed Fusion requires iterative experimentation to develop the correct process parameters that will result in high quality parts. There currently lacks good spread quality metrics and models for optimizing spread quality. A machine that simulates the powder spreading process was built to streamline the process of selecting process parameters for specific types of powders without having to operate the full laser system. The parameters investigated were the layer thickness and spreading speed. The response variables were metrics developed to assess spread quality: the percentage of the build plate covered by powder and the …