Innovative Projects Realized

Explore thousands of successful projects resulting from collaboration between organizations and post-secondary talent.

30508 Completed Projects

2882
AB
5105
BC
825
MB
681
NL
860
SK
9051
ON
9491
QC
97
PE
586
NB
1141
NS

Projects by Category

Antimicrobial Quality-Control of Innovative Space ? and Aviation relevant Insulation Materials

View Full Project Description
Faculty Supervisor:

TBD

Student:

Partner:

Deutsches Zentrum für Luft- und Raumfahrt

Discipline:

Life Sciences

Sector:

University:

Program:

Globalink Research Award

Striking a Perfect Water Balance in Polymer Electrolyte Fuel Cells

View Full Project Description
Faculty Supervisor:

TBD

Student:

Partner:

Forschungszentrum Jülich

Discipline:

Engineering

Sector:

University:

Program:

Globalink Research Award

Autonomous Bathymetry Vehicle For Tailings Impound Surveys

This research project will be used to help mining operations and other industrial proponents where applicable, ensure the integrity of their tailings ponds, reduce the risk to human life/health, and meet government regulations by reducing cost and logistic barriers to conducting tailings volume surveys.
The goal is to verify that an autonomous vehicle can conduct what would ordinarily be a dangerous sonar survey of a tailings pond. This will be accomplished by creating such a vehicle from easily sourced materials with existing supply lines, testing in variety of situations to gain this knowledge. The vehicle will be constructed from a low draught hydro-jet propelled kayak. The intern will outfit the vehicle with effective yet low-cost nautical autopilot, GPS, fishfinder/aquatic rangefinder, and associated supporting computer and radio equipment to facilitate fully autonomous, and remote-controlled operation.
KMB Resources Group will benefit by gaining knowledge they may choose to employ in their operations.

View Full Project Description
Faculty Supervisor:

Ulf Runesson

Student:

Partner:

KBM Forestry Consultants Inc

Discipline:

Engineering

Sector:

Agriculture

University:

Lakehead University

Program:

Accelerate

Smart empathetic speaker based on real-time EEG-based music therapy

During COVID-19 outbreak, many people are suffering the negative emotions, causing anxiety, fear, and depression in daily life. To improve the individuals’ mental health, musical therapy will be employed due to its high value of treatment in the mental health field. In our project, a smart empathetic speaker based on real-time emotion recognition system will be developed. Through electroencephalography (EEG) measurement, the types of signals reflecting the listener’s emotion will be extracted. The deep learning method will be used to recognize the emotions of the user in real-time. By continuous and extensive deep learning process, the emotion recognition system is expected to become more intelligent, and a personalized database of popularly used songs in music therapy will be organized. Finally, the speaker can assign known music to a listener based on existing music therapy experience and adjust the music according to the feedback obtained from the brain signal sensors.

View Full Project Description
Faculty Supervisor:

Anthony G Straatman;Jun Yang

Student:

Partner:

Pi Electronics Inc

Discipline:

Engineering

Sector:

Manufacturing; Professional, scientific and technical services

University:

The University of Western Ontario

Program:

Accelerate

Flood mapping and high water flood modelling for Indigenous communities at risk in the Winnipeg River Drainage basin

In 2014, the dams of Treaty #3 territory were overwhelmed by major continuous snowmelt and rain, causing mass flooding throughout the Rainy-Lake of the Woods watershed. To mitigate the damage that would be dealt to the Indigenous communities of the watershed by such events in the future, we will use remote sensing technologies and GIS to conduct a Flood Vulnerability Study and produce a major report and a number of digital resources that will be provided to the client communities. After the scope of the project has been determined, data compilation will be undertaken by interviewing community members, sourcing aerial photography, etc. A report will be produced along with several flood simulation models, videos and maps that showcase before/after scenarios with regards to flooding in areas of concern.

View Full Project Description
Faculty Supervisor:

Ulf Runesson

Student:

Partner:

CE Strategies Inc

Discipline:

Earth science

Sector:

Professional, scientific and technical services

University:

Lakehead University

Program:

Accelerate

Scalable and modular power electronics based on GaN devices for electric mobility

View Full Project Description
Faculty Supervisor:

TBD

Student:

Partner:

Reutlingen University

Discipline:

Engineering

Sector:

Education

University:

Program:

Globalink Research Award

Validation of a 3D virtual environment for investigating social exclusion

View Full Project Description
Faculty Supervisor:

TBD

Student:

Partner:

Rheinisch-Westfälische Technische Hochschule Aachen (Universitätsklinikum Aachen)

Discipline:

Life Sciences

Sector:

University:

Program:

Globalink Research Award

Development of a Hardware-in-the-Loop environment for thermal test bench by means of MATLAB&LabView

View Full Project Description
Faculty Supervisor:

TBD

Student:

Partner:

Technische Hochschule Ingolstadt

Discipline:

Engineering

Sector:

University:

Program:

Globalink Research Award

Development of a low-cost tool for skin cancer screening

The proposed research project is intended to develop an educational tool for the general public to be able to perform self-screening of their skin lesions. For this, a melanoma-detection mobile application will be developed to analyze lesion images acquired using a low-cost dermoscope attached to a smartphone. This product helps public or students to learn more about skin cancer and increase their self-awareness for early skin cancer prevention and treatment. The application automatically finds a lesion in a captured image. After lesion analysis, it displays different irregularities may exist in the lesion. It then explains for the user what these irregularities are and how these concepts are related to skin cancer. The partner organization will benefit from the product as there is huge interest in buying such educational, self-health and self-awareness application. Furthermore, the project can pave the way to higher goals and more expert systems in the future

View Full Project Description
Faculty Supervisor:

M. Stella Atkins

Student:

Partner:

MetaOptima Technology Inc

Discipline:

Computer science

Sector:

Manufacturing; Professional, scientific and technical services

University:

Simon Fraser University

Program:

Accelerate

Wave Rotor Reformer

Hydrogen offers the potential to decarbonize much of our society from clean transportation, to heating homes and businesses, to manufacturing. However, it must rely on a production method that does not release carbon itself. Steam methane reforming, the most common production method today, releases large quantities of CO2. The present project will study the production of methane in a completely new way. It is proposed to utilize shock waves heating to achieve the high temperatures necessary for the thermal decomposition of methane into hydrogen gas and carbon back. The later is able to be easily separated in solid form thereby producing a carbon-neutral hydrogen source. To achieve this shock compression of methane, a wave rotor design will be developed and tested in a series of developmental steps over the course of the project.

View Full Project Description
Faculty Supervisor:

Colin Copeland;Gordon McTaggart-Cowan

Student:

Partner:

New Wave Hydrogen Inc

Discipline:

Engineering

Sector:

Manufacturing

University:

Simon Fraser University

Program:

Accelerate

Adaptive Biofilm-Based apparel (ABBA)

Consumers are becoming increasingly interested in “smart” clothing with advanced properties that can enhance their comfort and performance. The next-generation of “smart” textiles can be fabricated by integrating living cells into the textiles that make up our clothing. For users of fitness apparel, living cells can endow clothing t-shirts or yoga pants with the ability to respond to changes in temperature, to the presence of sweat or to excessive stretching of the fabric. Working together, Lululemon and McGill engineers, aim at pioneering this field and demonstrating that “living textiles” can grow and adapt to the user and the environment. By incorporating harmless bacteria in textiles, the researchers will create some prototypes of “smart” textiles that can release fresh scents when soaked in sweat, “self-heal” after a tear or become more breathable in hot and humid environments. This project will position Canada as a leader in the emerging field of “smart living wearables”.

View Full Project Description
Faculty Supervisor:

Noemie-Manuelle Dorval Courchesne

Student:

Partner:

Lululemon

Discipline:

Life Sciences

Sector:

Manufacturing; Retail trade

University:

McGill University

Program:

Accelerate

Digital Humanities, research-creation, and emerging hybrid media publication platforms: reimagining Public Journal

Academic journals rarely feature research-creation projects: as such, they are often limited by conventions inherited from print publishing. Recent efforts to create digital and/or online journals can potentially result in new publishing opportunities for scholars and artists. This project will examine how international online f journals in art history, visual studies, and film and media studies deal with hybrid media and research-creation. Public, a Canadian journal known for featuring both scholars and artists, is currently looking to increase its digital presence and to launch a new website that will enable it to better integrate research-creation projects and hybrid media scholarship. This project will enable Public to look at best practices and to design an effective digital publication strategy.

View Full Project Description
Faculty Supervisor:

Michael Zryd

Student:

Partner:

PUBLIC Journal

Discipline:

Sociology

Sector:

New and Digital Media; Information and Communications Technology; Entertainment and Media

University:

York University

Program:

Accelerate