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Increasing collaboration among employees is a top priority for many organizations today. How can we help companies and employees collaborate better? Through Innovation Space, our team Kioro has an opportunity to design and develop alternative solutions that will help achieve the idea. This paper discusses the fields of the five

Increasing collaboration among employees is a top priority for many organizations today. How can we help companies and employees collaborate better? Through Innovation Space, our team Kioro has an opportunity to design and develop alternative solutions that will help achieve the idea. This paper discusses the fields of the five disciplines including from Graphic Design, Industrial Design, Engineering, Sustainability, and Business. The scope and content is aimed at focusing on each role, his/her basic responsibility and some of the highlights of his/her work over the whole semester. The very interactive and engaging environment at Innovation Space has driven me to think about teamwork, interpersonal relationship, and self-evaluation. By observations of my team members, this paper covers a reflection with a list of solutions to improve my life. Innovation Space not only teaches me about new product development, but also has a significant impact behind and lead me to think about life.
ContributorsTao, Wing Yi (Author) / Peck, Sidnee (Thesis director) / Boradkar, Prasad (Committee member) / Barrett, The Honors College (Contributor) / Department of Finance (Contributor)
Created2015-05
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DescriptionA reflection of the Innovation Space, product development program, at ASU from a Business Student's Perspective.
ContributorsJonas, Alec Evan (Author) / Licon, Wendell (Thesis director) / Peck, Sidnee (Committee member) / Mescher, Corinne (Committee member) / Barrett, The Honors College (Contributor) / Department of Finance (Contributor)
Created2013-05
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Description

Time studies are an effective tool to analyze current production systems and propose improvements. The problem that motivated the project was that conducting time studies and observing the progression of components across the factory floor is a manual process. Four Industrial Engineering students worked with a manufacturing company to develo

Time studies are an effective tool to analyze current production systems and propose improvements. The problem that motivated the project was that conducting time studies and observing the progression of components across the factory floor is a manual process. Four Industrial Engineering students worked with a manufacturing company to develop Computer Vision technology that would automate the data collection process for time studies. The team worked in an Agile environment to complete over 120 classification sets, create 8 strategy documents, and utilize Root Cause Analysis techniques to audit and validate the performance of the trained Computer Vision data models. In the future, there is an opportunity to continue developing this product and expand the team’s work scope to apply more engineering skills on the data collected to drive factory improvements.

Contributorsde Guzman, Lorenzo (Co-author) / Chmelnik, Nathan (Co-author) / Martz, Emma (Co-author) / Johnson, Katelyn (Co-author) / Ju, Feng (Thesis director) / Courter, Brandon (Committee member) / Industrial, Systems & Operations Engineering Prgm (Contributor, Contributor) / School of Politics and Global Studies (Contributor) / Industrial, Systems & Operations Engineering Prgm (Contributor, Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
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Description

Time studies are an effective tool to analyze current production systems and propose improvements. The problem that motivated the project was that conducting time studies and observing the progression of components across the factory floor is a manual process. Four Industrial Engineering students worked with a manufacturing company to develo

Time studies are an effective tool to analyze current production systems and propose improvements. The problem that motivated the project was that conducting time studies and observing the progression of components across the factory floor is a manual process. Four Industrial Engineering students worked with a manufacturing company to develop Computer Vision technology that would automate the data collection process for time studies. The team worked in an Agile environment to complete over 120 classification sets, create 8 strategy documents, and utilize Root Cause Analysis techniques to audit and validate the performance of the trained Computer Vision data models. In the future, there is an opportunity to continue developing this product and expand the team’s work scope to apply more engineering skills on the data collected to drive factory improvements.

ContributorsJohnson, Katelyn Rose (Co-author) / Martz, Emma (Co-author) / Chmelnik, Nathan (Co-author) / de Guzman, Lorenzo (Co-author) / Ju, Feng (Thesis director) / Courter, Brandon (Committee member) / Industrial, Systems & Operations Engineering Prgm (Contributor, Contributor) / Industrial, Systems & Operations Engineering Prgm (Contributor, Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
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Description

Time studies are an effective tool to analyze current production systems and propose improvements. The problem that motivated the project was that conducting time studies and observing the progression of components across the factory floor is a manual process. Four Industrial Engineering students worked with a manufacturing company to develo

Time studies are an effective tool to analyze current production systems and propose improvements. The problem that motivated the project was that conducting time studies and observing the progression of components across the factory floor is a manual process. Four Industrial Engineering students worked with a manufacturing company to develop Computer Vision technology that would automate the data collection process for time studies. The team worked in an Agile environment to complete over 120 classification sets, create 8 strategy documents, and utilize Root Cause Analysis techniques to audit and validate the performance of the trained Computer Vision data models. In the future, there is an opportunity to continue developing this product and expand the team’s work scope to apply more engineering skills on the data collected to drive factory improvements.

ContributorsChmelnik, Nathan (Co-author) / de Guzman, Lorenzo (Co-author) / Johnson, Katelyn (Co-author) / Martz, Emma (Co-author) / Ju, Feng (Thesis director) / Courter, Brandon (Committee member) / Industrial, Systems & Operations Engineering Prgm (Contributor, Contributor) / Industrial, Systems & Operations Engineering Prgm (Contributor, Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
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Description
This project was completed as part of the InnovationSpace collaborative thesis, an entrepreneurial joint venture program that allows students to develop products that create market value while serving societal needs. This collaborative thesis was done in a team of students from various disciplines under the sponsorship of Cisco Systems, and

This project was completed as part of the InnovationSpace collaborative thesis, an entrepreneurial joint venture program that allows students to develop products that create market value while serving societal needs. This collaborative thesis was done in a team of students from various disciplines under the sponsorship of Cisco Systems, and the goal was to develop an assistive technology project for the disabled that incorporated the internet of things (IOT). This project was broken out into several different phases. Initially, the team came up with a variety of ideas based on our market research. We narrowed down the ideas to a list of three potential products and built a business model and prototype for each of them seen in phase 5. After reviewing them further, we ultimately selected the MecX, an assistive technology designed to increase physical activity for a disabled person. We built a working prototype for this product and created a full design with all stakeholders in mind. Once this was done, we ran surveys to test the feasibility of our product to its demographic. Finally, we presented this product to a panel of judges and sponsors.

The attached files show the business write-up from phases 5, 6, and 7 from the project followed by a personal reflection.
ContributorsPorter, Oscar Garfield (Author) / Trujillo, Rhett (Thesis director) / Hedges, Craig (Committee member) / Department of Finance (Contributor) / Barrett, The Honors College (Contributor)
Created2019-05
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Description
The Innovation Space program is a joint venture among the Herberger Institute for Design and the Arts, Ira A. Fulton Schools of Engineering and W.P. Carey School of Business in order for transdisciplinary students to develop a product that creates social change. LG was the sponsor for 2018-2019 class with

The Innovation Space program is a joint venture among the Herberger Institute for Design and the Arts, Ira A. Fulton Schools of Engineering and W.P. Carey School of Business in order for transdisciplinary students to develop a product that creates social change. LG was the sponsor for 2018-2019 class with the goal of creating comfortable cooling that is better for the environment. Throughout seven phases, the Sumo team developed three product ideas, selected one product idea, developed a business plan and implementation plan. The Ciel vent system was picked and tested for any assumptions made in the initial business plan. After adjustments were made to the final phase seven business plan, a reflection was completed about the W. P. Carey School of Business and Innovation Space experience.
ContributorsHarris, Madison Nicole (Author) / Rhett, Trujillo (Thesis director) / Craig, Hedges (Committee member) / Department of Finance (Contributor) / Department of Supply Chain Management (Contributor) / Barrett, The Honors College (Contributor)
Created2019-05