Paper ID #15385Systems Engineering and Capstone ProjectsDr. Fred J. Looft, Worcester Polytechnic Institute Prof. Looft earned his B..S, M.S. and Ph.D. degrees in Electrical Engineering at the University of Michi- gan. After a brief period on industry, he joined the faculty of WPI 1n 1980 where he is now a professor in the ECE department and a founder of, and Academic Head of the Systems Engineering program. His interests include projects based education, curriculum development, international study abroad programs and mentoring, and autonomous robotic systems.. c American Society for Engineering
different departments represented by studentsmajoring in Mechanical Engineering, Mechanical Engineering Technology, ElectricalEngineering, Computer Engineering and Computer Science. This paper will present an overviewof the multidisciplinary capstone project, the lessons-learned from running several iterations ofthe project and recommendations for further improvements. It will present ideas and methodsthat should assist faculty at other small institutions in implementing similar contest-basedmultidisciplinary capstone project.1. IntroductionThe value of competition based senior design projects has been reported across numerousdisciplines. Electrical engineering students have created micromouse and line-maze solvingrobots1, while electrical and
becoupled to the departmental capstone courses to promote quick adoptions of multidisciplinarycapstone projects without sacrificing discipline specific rigor. Two student surveys and one end-of-quarter grading rubric are used to assess the merits of the coupled course design through thefirst quarter of a three quarter capstone series. Results of the surveys show that the SMCCcourse structure resolves student meeting scheduling problems by mandating attendance andretains departmental rigor by having advisors directly assigned in the departmental capstonecourse. We found that highly motivated teams with defined projects thrive with this model butthat industry-defined projects require increased communication for all involved faculty andindustry
what to document andhow as discussed in Section 5.5. Instructor Guide to SE Design Application to Capstone Courses This section is generalizes our aerospace-focused SE Design approach for other engineeringdisciplines interested in SE Design application to capstone and other design related courses. Thegeneralized approach was developed with SERC sponsorship through the Capstone MarketplaceProject8. As shown in Figure 12, capstone courses have multiple implementation options. Theoptions include project deliverable type which we categorize as (1) Products (hardware orsoftware including reports) and (2) Reports. Product focused projects increase workload for bothstudents and instructional teams and competitive (single projects) reduce workload
communication skills. c American Society for Engineering Education, 2016 Solution-based learning (SBL): Using systems engineering principles to guide capstone projects in technologyAbstractIn this paper, a new learning framework – solution-based learning (SBL) – is introduced. Itoffers a way of motivating students to continuously improve products or processes based onpractical or aesthetic considerations. This learning framework keeps the focus on early andsustained success through all phases of a project. It leverages selected principles of SystemsEngineering such as developing a discovery-oriented, multidisciplinary, life-cycle view ofany given project. It also provides learners with the
, University of the District of Columbia Sasan Haghani, Ph.D., is an Associate Professor of Electrical and Computer Engineering at the University of the District of Columbia. His research interests include the application of wireless sensor networks in biomedical and environmental domains and performance analysis of communication systems over fading channels.Roussel Kamaha c American Society for Engineering Education, 2016 Real-Time System Implementation for Video ProcessingAbstractThis paper details the results of a capstone design project to develop a real-timehardware/software video processing system to implement Canny edge detection algorithm on aZynq FPGA platform. The HSL tool, part of
diversity, quality, and rigorthe characteristics necessary to serve a 21st-century nation and world. Capstone projects arewidely acknowledged as important components in engineering, engineering technology, design,and business undergraduate education.2,6,15Much has been written on the topic, particularly on capstone courses in engineering.6, 17 Someresearchers have focused on capstone programming and structure.13, 17, 18 Others haveemphasized multidisciplinary collaborations.10, 19, 20 A smaller amount of research has addressedthe assessment of student knowledge patterns in multidisciplinary environments.4, 21, 22 However,little research has examined the role of faculty and their beliefs on the success factors, as well as,time commitments for
. c American Society for Engineering Education, 2016 Exploring Innovation, Psychological Safety, Communication and Knowledge Application in a Multidisciplinary Capstone Design CourseAbstractIn recent years, engineering schools have been inspired by accreditation bodies to incorporatemultidisciplinary teaming in their curricula, and hence engineering schools have started to offermultidisciplinary capstone design courses. These courses give senior engineering studentsindustry/client based projects in order to prepare them for today’s diverse educational andprofessional work place. In contrast to monodisciplinary capstones, multidisciplinary capstonescreate a diverse team of students from
Engineering Projects* 3Design: Engineering for the Community* 3 Design: Invention and Innovation* 3 Capstone Design* 6 Capstone Design* 6 Engineering Total 51 Engineering Total 75 Physics 1, 2, and Lab 9 Physics 1, 2, 3 and Lab 12 Chemistry1 4 Chemistry 4 Basic Science Total 13 Basic Science Total 16 Calculus 1, 2, 3 12
, mechanicals, as well as programs and project management. Since graduation, Jasmine has been working in a technical program management position at a company in Atlanta, GA that specializes in the use of ultrasonic technologies.Mr. Steven Howell SimsDr. Kevin Stanley McFall, Kennesaw State University c American Society for Engineering Education, 2016 A Mobile Telepresence Robot: a Case Study for Assessment of Capstone Design CourseAbstractThis paper presents the assessment scheme used to evaluate that learning outcomes are met in thecapstone design course for an undergraduate Mechatronics Engineering program. Included aresample rubrics used to evaluate the design-build-test model
engineering faculty advisor, principal investigator and project manager over thepast eight years on WERCware has also been a valuable learning experience and significantprofessional development opportunity for this author, much more than advising the former once-and-done senior capstone projects typical of our previous undergraduate curriculum. Theongoing multiyear project curriculum encourages continuity of focus, with opportunities todevelop long-term relationships while working toward meeting and satisfying real communityneeds. Learning to address the social need of those with high functional autism and othercognitive and behavioral disabilities brings the technology in a unique direction (e.g., exploringBiometric sensors to select the best
Academic Advisory Board. c American Society for Engineering Education, 2016 Project-based Learning in a Forensic Engineering CourseAbstractResearch and design experiences are important components of undergraduate engineeringeducation, each targeting specific skillset serving and different outcomes. While there are severalopportunities for learning engineering design process in engineering curricula, mostly notablythe capstone senior design series, the primary method to experience research is through faculty-directed research projects. The practice of forensic engineering has many aspects in commonwith the research process and as such a course based on this topic provides a unique opportunityfor students
: Seattle, Washington.2. Karl, O.; Todd, B.; Michael, W.; Tamara, L., Interdisciplinary Design Course Structure: Lessons forEngineering Instructors from a Capstone Design Course. ASEE Conferences: Seattle, Washington.3. Jodi, R.; Brian, A., Applying Student Engagement Techniques to Multidisciplinary Online EngineeringLaboratories. ASEE Conferences: Seattle, Washington.4. Elizabeth, W.; Jeffrey Dale, W., Engineering in the Humanities: Interdisciplinary Projects in the Arts andEngineering. ASEE Conferences: Seattle, Washington.5. Allen. I. E, S. J. Class differences: Online education in the United States; Needham, MA, 2010.6. Jaggars, S. S. Online Learning: Does It Help Low-Income and Underprepared Students
education.12 In literature, themost popular way of integrating real-world problem solving, especially in multidisciplinaryteams, seems to be through capstone design courses. As of 2005, roughly 35% of undergraduatecapstone design projects were conducted in multidisciplinary teams of students (an increase from21% in 1994).6 Evidence has shown, both qualitatively and quantitatively, that students benefitgreatly from working in multidisciplinary settings. Survey results show that engineeringprofessionals associate interdisciplinary thinking with creativity in their peers and ratemultidisciplinary work as very important in preparation for industry.7 Similarly, students whoparticipated in a multidisciplinary capstone course identified functioning in a
, vertically integrated, project-based engineering program. QScience Proceedings, page 73, 2015. ISSN 2226-9649. [3] Stuart Palmer and Wayne Hall. An evaluation of a project-based learning initiative in engineering education. European Journal of Engineering Education, 36(5):357–365, 2011. doi: 10.1080/03043797.2011.593095. [4] Robert H Todd, Carl D Sorensen, and Spencer P Magleby. Designing a senior capstone course to satisfy industrial customers. Journal of Engineering Education, 82(2):92–100, 1993. ISSN 2168-9830. [5] Nathan Hotaling, Barbara Burks Fasse, Lewis F Bost, Christopher D Hermann, and Craig R Forest. A quantitative analysis of the effects of a multidisciplinary engineering capstone design course. Journal of Engineering
. Prior to joining QUEST, Jessica was the Graduate Assistant in Columbia University’s Office of Student Engagement.Ms. Amanda Yard, University of Maryland, College Park Amanda Yard is a graduating senior from the University of Maryland, Robert H. Smith School of Busi- ness. She is receiving a major in Supply Chain Management and a minor in Spanish Language and Cultures. She will be working for PepsiCo as an Integrated Supply Chain Associate in Schaumburg, IL. Amanda has been a member of the QUEST Honors Program since Spring 2013 where she has served as a mentor, as well as on the capstone project scoping team. c American Society for Engineering Education, 2016 Impact of
engineering students participating in virtual team projects was used in theanalysis. Results from the analysis are presented suggesting a statistically significant impact ofthe intervention on self-management skills when comparing randomly assigned teams with andwithout the intervention. The intervention is designed to be scalable so that it can be embeddedinto existing project-based courses. Our findings have important implications for thedevelopment of teamwork skills in engineering courses and provide evidence of a successfulstrategy that can be integrated into the existing engineering curriculum.KeywordsVirtual teams, team effectiveness, information and communication technologies, engineeringeducation, collaborative learningIntroductionThe
instructors plan to attempt to augment the participation from the disciplines outside ECE by incorporating short modules in core classes of the subject areas of human factors, cybersecurity, and other relevant disciplines to introduce the concept or ResCS and encourage participation in the ResCS course. To provide more in depth exploration and completeness of projects the ResCS course will have an optional second semester structured as an undergraduate capstone or graduate thesis support to encourage completion of concepts into implemented designs. The team seeks to disseminate the successes of the course and the Grid Game to other universities and continue to encourage related disciplines at universities to participate in this interdisciplinary
Paper ID #15956Towards a Multidisciplinary Teamwork Training Series for UndergraduateEngineering Students: Development and Assessment of Two First-year Work-shopsDr. Ada Hurst, University of Waterloo Ada Hurst is a Lecturer in the Department of Management Sciences at the University of Waterloo. She has taught and coordinated the capstone design project course for the Management Engineering program since 2011. She also teaches courses in organizational theory, technology, and behaviour. She received her Bachelor of Applied Science in Electrical Engineering and Master of Applied Science and PhD in Management Sciences, all
support the development ofinterdisciplinary curricula at the undergraduate level and encourage faculty and studentengagement in interdisciplinary projects that could be later presented at the university, regional,national and international levels. SEMS-ROC demonstrates diversity in research backgroundsof the faculty and includes interdisciplinary interests of all three departments in the school.Research activities tend to cluster around several broad topic areas involving faculty from acrossSEMS disciplines as well as in some cases, from other Schools at the institution along with otherinstitutions around the country.One of the initiatives undertaken at SEMS-ROC to break down the departmental-level andschool-level silos and encourage to nurture