Paper ID #6114Lab and Team Project Development for Engineering Problem Solving usingMATLAB, with Emphasis on Solar Power and Engineering for SustainabilityMr. Stanley W. Hsu, University of California, Davis Stanley Hsu received a B.S. degree from University of California, Los Angeles in 2006 and an M.S. degree from University of California, Davis in 2011, both in Electrical Engineering. He is currently pursuing a Ph.D. in Electrical & Computer Engineering at UC Davis. His research is in the area of low power mixed- signal integrated circuits for energy harvesting sensor applications. He is also interested in high-speed
manifests itself aslower grades received on their various forms of assessment.Cooperative learning is an instructional approach in which students work together in groups on alearning task (e.g. assignment, project or laboratory) that is structured to have the followingessential elements1,2: 1. Positive interdependence. This refers to the need to have every team member involved in achieving the group task. This is implicitly encouraged, because if any group member fails to do their part, the whole group suffers the consequences. 2. Individual accountability. Each member will be held responsible for completing his/her contribution to accomplishing the group task and understanding the contributions of the other
obstacles and disincentivize them to continue to be interested in andwant to study in this area. Therefore, the IASG club was started as a retention tool. The IASGwas one answer to keeping students who want careers in information assurance andcomputer/network security engaged during their undergraduate coursework.Second, one of the authors of this paper is the Director of the Information Assurance Center andhis research area focuses on information assurance and computer/network security. In the earlyyears of Iowa State University opening the Information Assurance graduate education program,he had a steady stream of undergraduate students coming through his office looking to work onresearch projects focused on information assurance and computer
Student creations 17 (12/12 – 12/16) Final Project Presentations (during Final Exam period) * In-lab group presentations and reports are due for the indicated modules on these dates.Lecture ContentThe lecture portion of the course was given on Tuesdays. The first lecture (Week 2above) provided basic orientation information for new ECE students. Lectures 2-5reviewed the role of creativity in science and engineering, the importance of innovationin the greatest engineering achievements of the 20th century12,13, neurological conceptsunderlying current understandings of creativity, convergent and divergent thoughtprocesses, the impacts of conventional education on creativity, relationships betweenintelligence and creativity, whether
Stein, University of California, San Diego Works as the Project Development and Outreach Coordinator for the Electrical and Computer Engineering Department at UC San Diego.Prof. Truong Nguyen, University of California, San Diego Truong Nguyen is a Distinguished Professor at UCSD. His current research interests are video processing and machine learning algorithms with applications in health monitoring/diagnosis and 3D modeling. He received the IEEE Signal Processing Paper Award for the paper he co-wrote with Prof. P. P. Vaidyanathan on linear-phase perfect-reconstruction filter banks (1992). He received the NSF Career Award in 1995. While serving as department Chair (2014-2019), Prof. Nguyen and several faculty and
://web.mst.edu/˜rdua/) Page 26.1742.1 c American Society for Engineering Education, 2015 WIMP51 Processor: Envisioning and Recreating the Platform for Implementing Student Design Projects Department of Electrical and Computer Engineering, Missouri University of Science and Technology, Missouri, USAAbstract The Digital Systems Design course, at Missouri University of Science and Technology(Missouri S&T), aims to introduce Electrical and Computer Engineering majors to embeddedsystems design using microcontrollers. The internal conceptual working of
AC 2009-792: A PROJECT-BASED POWER ELECTRONICS COURSE WITH ANINCREASED CONTENT OF RENEWABLE-ENERGY APPLICATIONSRadian Belu, Drexel University Page 14.91.1© American Society for Engineering Education, 2009A Project-based Power Electronics Course with an Increased Content of Renewable Energy ApplicationsAbstractThis paper will described a project- and problem-based learning approach in teachingpower electronics for upper-level undergraduate students enrolled in the appliedengineering technology program at our university. This course will have an increasedcontent of applications of power electronics in renewable energy conversion systems.Power electronics, still
AC 2009-2152: MOSIS FABRICATED CMOS OPERATIONAL AMPLIFIERS FORCLASS PROJECTS IN AN ANALOG I.C. DESIGN COURSEMustafa Guvench, University of Southern Maine Dr. Mustafa G. Guvench received M.S. and Ph.D. degrees in Electrical Engineering and Applied Physics from Case Western Reserve University. He is currently a full professor of Electrical Engineering at the University of Southern Maine. Prior to joining U.S.M. he served on the faculties of the University of Pittsburgh and M.E.T.U., Ankara, Turkey. His research interests and publications span the field of microelectronics including I.C. design, MEMS and semiconductor technology and its application in sensor development, finite element and analytical
AC 2009-2191: DESIGN AND FABRICATION OF IMPACT (ACCELERATION)SENSORS AS CLASS PROJECTS IN A MEMS COURSEMustafa Guvench, University of Southern Maine Dr. Mustafa G. Guvench received M.S. and Ph.D. degrees in Electrical Engineering and Applied Physics from Case Western Reserve University. He is currently a full professor of Electrical Engineering at the University of Southern Maine. Prior to joining U.S.M. he served on the faculties of the University of Pittsburgh and M.E.T.U., Ankara, Turkey. His research interests and publications span the field of microelectronics including I.C. design, MEMS and semiconductor technology and its application in sensor development, finite element and analytical
Paper ID #17946Project Activities in Electronics to Spark Interest in STEM from PK-12 throughLifeDr. Ramakrishnan Sundaram, Gannon University Dr. Sundaram is a Professor in the Electrical and Computer Engineering Department at Gannon Univer- sity. His areas of research include computational architectures for signal and image processing as well as novel methods to improve engineering education pedagogy. c American Society for Engineering Education, 2017 Work-in-Progress: Project Activities in Electronics to Spark Interest in STEM from PK-12 through LifeIntroductionThis paper
. c American Society for Engineering Education, 2017 Project Based Learning Curriculum for the Junior Year Based on Building a Laser Tag System Brad L. Hutchings and Stephen Schultz hutch@ee.byu.edu, schultz@ee.byu.edu Dept. of Electrical and Computer Eng. Brigham Young University1 IntroductionThis paper describes a Project Based Learning (PBL) curriculum 1 that spans the junior year of theElectrical and Computer Engineering Department. This curriculum consists of two, lock-stepsemesters. During fall semester all juniors (120+ students) enroll in three, four-credit-hour coreclasses: 1
Paper ID #20562Efficacy of Project-Based Instruction in a Hybridized Electronics and Con-trols CourseDr. John Andrew Lund, Western Washington University Dr. Lund’s research involves the development of novel control systems, sensing and measurement tools for unique environments. His previous and ongoing research efforts include the development of a high- resolution wireless instrumented mouthguard for the assessment of severity of head impacts, development of an ultra-long lifespan wireless sensor devices designed to form robust data networks in remote areas lacking infrastructure, and the development of of an electron
collaborative research with Wright-Patterson Air Force in applied image processing. In January 1997, he joined the newly developed electrical and com- puter engineering program at Boise State University where he is currently is the chair and an Associate professor. He led the development and starting of the BS and MS programs. He taught several courses and supervised numerous M.S. thesis and Senior Design Project. He contributed to the start of the PhD program and is currently advising three Ph.D. students and two MS students. He also has been conducting research and consultation in R&D for Micron Technology, Hewlett Packard and others. Dr. Rafla’s areas of expertise are: security of systems on programmable chips and
Paper ID #22185Assessing Scrum Project Management and Teamwork in Electrical and Com-puter Engineering CoursesProf. Branimir Pejcinovic, Portland State University Branimir Pejcinovic received his Ph.D. degree from University of Massachusetts, Amherst. He is a Pro- fessor and former Associate Chair for Undergraduate Education at Portland State University, Electrical and Computer Engineering department. In this role he has led department-wide changes in curriculum with emphasis on project- and lab-based instruction and learning. His research interests are in the areas of engineering education, semiconductor device
Paper ID #21268Design and Implementation of a Health-monitoring Design Project in an In-troductory Digital Design CourseDr. Matthew A. Watkins, Lafayette College Matthew Watkins is an assistant professor of Electrical and Computer Engineering at Lafayette College. He received his Ph.D. and M.S. in Electrical and Computer Engineering from Cornell University and B.S. degrees in Computer Engineering and Electrical Engineering from the University at Buffalo. His research interests include engineering education and the design, use, and management of emerging computer ar- chitectures. c American Society
Paper ID #18940Design and Implementation of Project-Based Courses on Cutting-Edge Com-puter TechnologiesDr. Wenbing Zhao, Cleveland State University Dr. Zhao is a Full Professor at the Department of Electrical Engineering and Computer Science, Cleveland State University (CSU). He earned his Ph.D. at University of California, Santa Barbara in 2002. Dr. Zhao has a Bachelor of Science degree in Physics in 1990, and a Master of Science degree in Physics in 1993, both at Peking University, Beijing, China. Dr. Zhao also received a Master of Science degree in Electrical and Computer Engineering in 1998 at University of California
Paper ID #27433Deepen Students’ Understanding of Computer Networking via a Project-orientedCooperative Learning StrategyDr. Guodong Wang, Massachusetts College of Liberal Arts Dr. Guodong Wang is currently an Assistant Professor in the Computer Science Department, Mas- sachusetts College of Liberal Arts (MCLA). His research topics include: (1) Big data transfer in high- speed networks; (2) Future Network Architecture, e.g., Software Defined Networking (SDN); (3) Future Smart Grid Architecture; and (4) Cyber Security in Wireless Sensor Networks (WSN) and Internet of Things (IoT). He has published over 30 research papers
Paper ID #26626Board 62: Work In Progress for Developing Project-Based Experiential Learn-ing of Engineering ElectromagneticsMr. Adriyel Nieves, The Pennsylvania State University Adriyel Nieves is currently pursuing a Masters degree in electrical engineering at The Pennsylvania State University. He worked as a professional engineer for three years after receiving his bachelors degree in electrical engineering from Penn State in 2015. His interests include radar systems, Electromagnetic theory, meta-materials, antenna design, embedded systems, and improving engineering education.Dr. Julio Urbina, Pennsylvania State University
Paper ID #27398Board 63: Work in Progress: Adapting Scrum project management to ECEcoursesProf. Branimir Pejcinovic, Portland State University Branimir Pejcinovic received his Ph.D. degree from University of Massachusetts, Amherst. He is a Pro- fessor and former Associate Chair for Undergraduate Education at Portland State University, Electrical and Computer Engineering department. In this role, he has led department-wide changes in the curricu- lum with emphasis on the project- and lab-based instruction and learning. His research interests are in the areas of engineering education, semiconductor device characterization
Paper ID #25610Board 66: Work in Progress: Integrating Differentiated Instruction and Project-Based Learning to Teach Embedded SystemsDr. Sohum A Sohoni, Arizona State University, Polytechnic campus Dr. Sohoni is an Assistant Professor in Engineering at the Polytechnic School at Arizona State University. Prior to joining ASU, he was an Assistant Professor at Oklahoma State University. His research inter- ests are broadly in the areas of computer architecture and performance analysis, and in engineering and computing education. He has published in ACM SIGMETRICS, IEEE Transactions on Computers, the International Journal of
three Trident Scholar Projects, and received the AY2006-2007 Raouf-Ali-Raouf Award for Excellence in Engineering Teaching at the U.S. Naval Academy. Dr. Ciezki is a member of the IEEE. c American Society for Engineering Education, 2016An Electromagnetic Railgun Design and Realization for an Electrical Engineering Capstone ProjectDr John Ciezki, Lt Col Jeff McGuirk, C1C Taylor Bodin, C1C Santos Bonilla, C1C Gytenis Borusas, and C1C Jacob Lawson, United States Air Force Academy Faculty and StudentsAbstract: This work reports on how a team of four undergraduate students at the United States Air ForceAcademy designed, built, and tested a desk-top railgun for a year
. Fagan award that recognizes excellence in experiential teaching and extraordinary support for students outside the classroom.Dr. Diana Bairaktarova, Virginia Tech Dr. Diana Bairaktarova is an Assistant Professor in the Department of Engineering Education at Virginia Tech. Through real-world engineering applications, Dr. Bairaktarova’s experiential learning research spans from engineering to psychology to learning sciences, as she uncovers how individual performance is influenced by aptitudes, spatial skills, personal interests and direct manipulation of mechanical objects. c American Society for Engineering Education, 2016 Project-Based Approach in an Electric Circuits Theory Course
Paper ID #11120A Project-Based Learning Approach to Teaching Computer Vision At the Un-dergraduate LevelDr. Sami Khorbotly, Valparaiso University Received the Bachelor of Engineering degree in Electrical Engineering from Beirut Arab University, Beirut, Lebanon in 2001. He then received the M.S. and Ph. D. degrees both in Electrical and Computer Engineering from the University of Akron, Akron, OH in 2003 and 2007, respectively. He is currently an Associate Professor of Electrical and Computer Engineering and the Frederick F. Jenny Professor of emerging technologies at Valparaiso University. He teaches in the areas of digital
Paper ID #11109Diversified Projects in Microcontroller Class Enhances Undergraduate Stu-dents’ Learning, Design and ResearchDr. Vicky Fang, Cedarville University Zhengwei Fang Associate Professor of Computer Engineering School of Engineering and Computer Sci- ence Cedarville UniversityDr. Sam L. SanGregory, Cedarville University Professor of Electrical Engineering and Assistant Dean School of Engineering and Computer Science, Cedarville University, Cedarville, OH.Dr. Clint Kohl, Cedarville University Dr. Kohl joined the faculty of Cedarville University in the fall of 1994. His graduate research involved the development
Library and Vertical Integration Projects Lei Zhang, Ibibia Dabipi, Yuanwei Jin, Payam Matin Dept. of Engineering and Aviation Sciences, University of Maryland Eastern ShoreAbstractIn this paper, we present our experience on improving undergraduate engineering education withtwo Experiential Learning approaches. The first is Educational Module Library (EML) and thesecond is Vertical Integration Project (VIP). The EML is a collection of typical engineeringmodules with diversified functions. All modules in the EML are carefully developed by studentswith latest technologies under the guidance of faculty. The EML is featured in simple, popular,complete and user-friendly. The EML can
AC 2007-922: WEB-BASED DESIGN AND ANALYSIS PROJECTS FOR A JUNIORLEVEL INTEGRATED CIRCUITS COURSEDavid Braun, California Polytechnic State University David Braun is a Professor in the Electrical Engineering Department at Cal Poly in San Luis Obispo. He worked at Philips Research Labs in Eindhoven, the Netherlands from 1992 to 1996, after completing the Ph.D. in Electrical Engineering at U.C. Santa Barbara. Please see www.ee.calpoly.edu/~dbraun/ for information about his courses, teaching interests, and research. Page 12.1599.1© American Society for Engineering Education, 2007 Web Based Design
, pattern recognition, semantic web technologies, and computer science education. She has been involved in several computer science curriculum projects. Most recently she chaired the Intelligent Systems focus group of the IEEE-CS/ACM Task Force on Computing Curricula 2001.Jimmy Secretan, University of Central Florida JIMMY SECRETAN is a Ph.D. student in the Department of Electrical and Computer Engineering at the University of Central Florida. His research interests lie in the areas of Machine Learning and cluster computing. Page 11.234.2© American Society for Engineering Education, 2006
2006-1990: ENGAGING UNDERGRADUATE STUDENTS IN MACHINELEARNING RESEARCH: PROGRESS, EXPERIENCES AND ACHIEVEMENTSOF PROJECT EMD-MLRGeorgios Anagnostopoulos, Florida Tech GEORGIOS C. ANAGNOSTOPOULOS is an Assistant Professor in the Electrical & Computer Engineering department of Florida Institute of Technology. His research interests are statistical machine learning, neural networks and data mining.Michael Georgiopoulos, University of Central Florida MICHAEL GEORGIOPOULOS is a Professor of the Department of Electrical and Computer Engineering at the University of Central Florida. His research interests lie in the areas of neural networks and applications of neural networks in pattern
2006-2134: A MULTI-DISCIPLINARY SENIOR DESIGN PROJECT USINGCOOPERATIVE UNMANNED AERIAL VEHICLES (UAVS)James Wicker, U.S. Air Force Academy an Assistant Professor in the Department of Electrical and Computer Engineering and the U.S. Air Force Academy. He received his Bachelor of Science in Electrical Engineering from the U.S. Air Force Academy in 1987 and his Master of Science in Electrical Engineering from the University of Dayton in 1997. He has experience in developmental test and evaluation of radar systems and aviation navigation systems. His research interests include unmanned aerial vehicle and electromagnetic signal propagation modeling. He is a member of ASEE and IEEE.Erlind Royer, U.S. Air
prepares students for open-ended team projects in the second course. This paperdescribes an easily adaptable model for a “pre-capstone” course that prepares students for ateam-based capstone experience in electrical engineering. The course is broadly adaptable sinceit has many similarities with the structure, outcomes, and grading methods of other capstonecourses nationwide1.Outcomes for the pre-capstone course were chosen based on observed deficiencies in studentperformance in solving open ended projects as part of a team in the second capstone course. Thecourse was structured on a cognitive apprentice model. In the cognitive apprentice model,experts model behaviors or skills for novices who then practice the skills on their own.Continuous