Paper ID #35077Senior Capstone Project Raven: Study of an Autonomous System Design forPower Line Inspection Based on the Quanser QDrone PlatformMr. Jovany Avila, University of the Incarnate Word Jovany Avila is an undergrad at the University of the Incantate Word studying Mechatronic Engineering, graduating in December 2020. He works in the Autonomous Vehicle Systems (AVS) Lab as the lead Unmanned Aerial System (UAS) researcher and pilot. He is responsible for producing an indoor model of an autonomous UAS to conduct powerline and utilities pole inspections for real world applications. His future interests are to
Paper ID #35101Automating Project Team Formation with Heterogeneous Project Preferencesand Skill Mix ConstraintsMr. Joseph Anthony Donndelinger, Baylor University Mr. Donndelinger joined Baylor University’s School of Engineering and Computer Science as a Clinical Associate Professor after 23 years of experience in the automotive and cutting tool industries. During his 16 years as a Senior Researcher at General Motors’ Global Research and Development Center, Mr. Donndelinger served as Principal Investigator on 18 industry-university collaborative projects focusing primarily on conducting interdisciplinary design feasibility
AbstractEngineering students are being asked to work on real-world projects and need to access accurate costinformation for their design projects. In the case of chemical engineering and related disciplines,capstone courses often require designing industrial processes or a chemical plant involving bulkchemical prices for both feedstocks and products. A lot of chemical pricing information wasavailable in trade magazines; however, bulk chemical prices are increasingly difficult to locate asproducers of that information have reduced the availability and further monetized the informationover the last 15 years. The resulting information sources containing chemical prices often cannot beacquired by academic libraries due to cost or licensing terms. In cases where
tool for control systems Matilda Ho Mechanical Engineering Student University of Texas at Dallas AbstractAmong engineering students, control systems are a notoriously challenging subject for itsabstractness—making difficult to connect each of its subtopics for a comprehensive understanding.The undergraduate capstone project discussed in this paper focused on developing a free, onlineeducation tool for control systems that integrates the traditional curriculum with interactivecomponents to create a more comprehensive learning experience. The technical products used todevelop the learning tool
University of Texas at Austin AbstractThe ABET accreditation criterion 5 requires a "culminating major engineering design experience"in the curriculum1. This is commonly referred to as the senior capstone design course. Thefreshman engineering education experience is loaded with required science and mathematicscourses, and there is little room for an engineering experience. Nonetheless, most faculty want tohave some engineering course during the freshman year, and many ideas have been tried over theyears. Of these many ideas, the concept of a team design project with hands-on activities seems tobe the most popular and most beneficial. This paper reports on such a proposed freshmanengineering cornerstone
non-profit organization called Christ Church Camp (CCC)that served as the primary client for design. The project was to design a neighborhood for those transitioningout of homelessness and into greater self-sufficiency. The design had to fit within a budget determined bygrant money sought by CCC. There were engineering challenges concerning how to build sustainable tinyhomes and use rainwater harvesting to support an urban garden. Student designers also had to learn thebasics of social work and poverty alleviation so that they could design a neighborhood that would buildconfidence and community for homeless individuals. Frequently, the homeless we served were coming outof addictions and had deficient relational skills.We conducted the class
CUReS Cancer weekly summer seminars; maps global exchange path- ways to expand access to study abroad; partners with industry & clinical sponsors in the Capstone De- sign Program; and leads ABET engineering and SACSCOC regional accreditation activities for the BME department. Her academic interests include implementing and measuring psychosocial interventions that have been demonstrated to improve success for targeted at-risk populations, such as social-belongingness, growth mindset, and self-efficacy. Ms. Cousins holds a Master of Arts in Higher, Adult, and Lifelong Education (HALE) from Michigan State University, and a Bachelor of Science in Biology from Washing- ton State University. She has worked in the
and possiblybefore the visit, consisting of: “Representative examples of graded student work including, whenapplicable, major design or capstone projects.” The glossary further clarifies that Student Workexamples should “span the grade range from excellent to poor.”a Engineering Technology is within the ETAC of ABET, and the other two programs are within the EAC. This paperrefers to both ETAC and EAC review expectations. Proceedings of the 2021 ASEE Gulf-Southwest Annual Conference Baylor University, Waco, TX Copyright 2021, American Society for Engineering Education 2Since ABET encourages display
Research Service Award training grant from the National Institute of Biomedical Imaging and Bioengineering (NIBIB), an institute with the National Institutes of Health (NIH). Dr. Rylander’s research is focused on imaging in ophthalmology. He has conducted clinical trials on a polarization-sensitive OCT system to measure the changes that occur in the retinal nerve fiber layer in glaucoma. Other projects include a drug delivery device for the eye and measuring blood flow in the eye. He is collaborating with researchers at UTMB to identify biomarkers of Alzheimer’s Disease in the eye.Prof. Mia K. Markey, University of Texas at Austin Dr. Mia K. Markey is a Professor of Biomedical Engineering and Cullen Trust for Higher
bellow:Supplemental Materials – Section I.E.5.b.(2) of the Accreditation Policy and Procedure Manual 7states that evaluators will review materials that are sufficient to demonstrate that the program is incompliance with the applicable criteria and policies. Much of this information should be incorporatedinto the Self-Study Report. Additional evidence of program compliance may be made available to theevaluators prior to and during the review, using an online storage location. Each program should makethe following materials available to the team before and during the virtual review, without duplicatingmaterials provided in the Self-Study Report: • Representative examples of graded student work including, as appropriate, major design or capstone
14 ● George Floyd—Asked 92 students about what engineering faculty should do in a Google form; 87 said engineering faculty should discuss it in the classroom. Used the data to teach qualitative data coding. ● Juneteenth—Read the statement by the university president about Texas’s history and what our state was now doing, put students in random breakout rooms for 5 minutes. Students said it was “cathartic.” ● Protests—Students brainstormed a potential capstone project to aid the protesters. 10 students listed that as their preferred project. The project was eventually not chosen, as students worried about potential privacy implications. ● Justice Ruth Bader Ginsburg’s death—Asked students to discuss how her