Projets novateurs réalisés

Explorez des milliers de projets réussis issus de la collaboration entre organisations et talents postsecondaires.

30 508 projets complétés

2882
AB
5105
C.-B.
825
MB
681
NL
860
SK
9051
ON
9491
QC
97
PE
586
NB
1141
NS

Projets par catégorie

Remote Wireless Charging and Energy Harvesting

The main objective of this project is to offer efficient and commercially viable solutions for wireless power transfer to portable devices such as Recon’s wearable units. The first phase of the research is dedicated to determine pros and cons of various such techniques and the maximum power and distance for wireless power delivery to such systems. The transferred power can be used as a top-up power to extend the battery life of the products. If the results of the first stage indicates that we can reliably deliver more than top-up power, the extra power will be used to charge the battery as well. Using reliable power sources for wireless power transmission, we plan to reduce the size of the battery on the portable devices and provide better user experience for Recon’s customers.

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Superviseur du corps professoral :

Shahriar Mirabbasi

Étudiant :

Partenaire :

Recon Instruments Inc

Discipline :

Engineering

Secteur :

Manufacturing

Université :

The University of British Columbia

Programme :

Accelerate

Momentum Resolved Electron Energy Loss Spectroscopy of Transition Metal Dichalcogenides

Transition metal dichalcogenides (TMDs) are a family of materials that are host to many quantum phenomena which could potentially be used to build the next generation of high-speed, energy-efficient electronic devices. These materials are comprised of atomically thin sheets stacked on top of each other, with the interactions between sheets playing a critical role in determining the physical properties that are exhibited. By controlling how sheets are stacked and introducing new atoms between sheets, it is possible to fine tune the properties of TMDs for specific use cases. The focus of this research project is to investigate the effects of stacking on the electronic properties of tantalum diselenide (a common TMD). This will be accomplished by using momentum-resolved electron-energy-loss spectroscopy in a transmission electron microscope. In this technique a beam of high energy electrons is used to excite different electronic processes inside a specimen, with the electrons losing some of their energy in the process. Passing these electrons through different filters then makes it possible to map out the energy-momentum relationship of the processes in question. Ultimately, this project will provide new data to the field of TMD research.

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Superviseur du corps professoral :

Marek Malac

Étudiant :

Partenaire :

Osaka University

Discipline :

Physics

Secteur :

Education

Université :

University of Alberta

Programme :

Globalink Research Award

Preparation of High Entropy Cermet Powders for Thermal Spray

With an ever-expanding list of critical materials and minerals, it is crucial to find sustainable material solutions to well-established industrial requirements. High-entropy materials, i.e. materials that mix 5 or more constituents in near equi-atomic proportions, could mitigate these issues by offering highly resistant and stable materials. As a result, addressing the issues of critical materials could come from the replacement of certain materials by high-entropy counterparts made of non- (or less-) critical materials.

This project aims to specifically address the issue of ceramic-metals, also called “cermets”, that are often used as high-temperature seals or for tooling applications, with materials such as tungsten-carbide (WC). These materials are sought for their high hardness, high temperature resistance and high corrosion resistance. These applications are typically achieved by developing coatings via thermal spray, a high-temperature process in which melted or heated powder materials are sprayed onto a surface.

By relying on routine preparation methods such as gas atomization or high-energy ball milling, this research project aims to prepare high-entropy cermet powders, that could be used to develop coatings via thermal spray. The project will explore the processing and spraying of the powder as well as the thorough characterization of the powders and obtained coatings.

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Superviseur du corps professoral :

Gobinda Saha

Étudiant :

Partenaire :

Université de Limoges

Discipline :

Engineering

Secteur :

Education

Université :

University of New Brunswick

Programme :

Globalink Research Award

Application of engineering grade vector flow ultrasound in human physiological study

This project will stimulate discovery into blood flow dynamics and strengthen ties between Canada and Japan. By learning advanced techniques from Japan’s cutting-edge Verasonics ultrasound system, the intern will study large veins and the heart during physiological stressors including body tilting, breathing maneuvers and exercise. The potential discoveries may help uncover diagnostic imaging capabilities to better characterize normal and pathological cardiovascular function. This knowledge transfer can expand Canadian research, allowing Waterloo’s innovation capacity to advance work in application of next-generation ultrasound in cardiovascular physiology.
Importantly, the project fosters collaboration across physiology and engineering, leveraging expertise from Dr. Saijo’s Japanese team and Waterloo’s Dr. Au. Together, they aim to develop imaging techniques that will not only enhance Canadian capacity in physiological and ultrasound research but also contribute new methodologies for application of biomedical engineering globally.
The University of Waterloo is already recognized for promoting interdisciplinary projects and will serve as a hub to further grow ideas learned from Japan, creating opportunities for Canadian researchers. Through the Mitacs Globalink program, this project stands to drive Canada’s role in biomedical engineering innovation forward, bridging diverse fields for impactful, pioneering discoveries.

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Superviseur du corps professoral :

Jason Au;Michaela Devries-Aboud

Étudiant :

Partenaire :

Tohoku University

Discipline :

Life Sciences

Secteur :

Health and Related Sciences & Technology; Technology

Université :

University of Waterloo

Programme :

Globalink Research Award

Evaluating Non-Market Investment Benchmarks and Liquidity Premiums in Canadian Pension Funds

Le projet de recherche proposé vise à étudier comment les fonds de pension canadiens peuvent mieux évaluer la performance de leurs investissements, en particulier ceux qui ne sont pas cotés en bourse, comme l’immobilier ou les infrastructures. Le stagiaire fera une revue des études existantes pour identifier des indices de référence (ou benchmarks) qui permettraient de mesurer ces performances. Il se penchera aussi sur la prime de liquidité, une compensation pour les investisseurs qui placent leur argent dans des marchés moins liquides. Ce projet bénéficiera non seulement au Régime de retraites de l’Université de Montréal (RRUM), mais aussi à d’autres fonds de pension au Canada en les aidant à prendre de meilleures décisions d’investissement pour garantir les pensions à long terme.

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Superviseur du corps professoral :

Claudia Gagné

Étudiant :

Partenaire :

Université de Lausanne

Discipline :

Mathematics

Secteur :

Education

Université :

Université de Montréal

Programme :

Globalink Research Award

Remote Patient Blood Glucose Monitoring using rPPG

The project will enable contactless measurement of blood glucose using remote Photoplethysmography (rPPG) technology using patients’ face or finger videos which is a comparatively new artefact. There is a lack of training data and the blood volume pulse (BVP) signal extracted from the videos suffer from a lot of noise resulting in poor measurement accuracy. The proposed research will develop novel signal extraction and noise reduction techniques, new machine learning models to measure blood glucose, and collect new training data to improve the reliability of the methods for remote video-based blood glucose monitoring. The technology can contribute to patient wellbeing by enabling non-invasive blood glucose measurement, improve the quality of remote healthcare provisioning by allowing physicians to remotely check patients’ blood glucose levels, improve wellbeing of the caregivers by simplifying the task, and prevent serious health problems and hospitalization due to improper blood glucose levels.

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Superviseur du corps professoral :

Farhana Zulkernine

Étudiant :

Partenaire :

MarkiTech

Discipline :

Computer science

Secteur :

Health and Related Sciences & Technology; Professional, scientific and technical services

Université :

Queen's University

Programme :

Accelerate

Stabilisation géochimique des fosses remblayées et ennoyées avec du Bauxsol

Ce projet de recherche porte sur l’étude approfondie des propriétés du Bauxsol™, un produit dérivé de résidus de bauxite, pour améliorer la qualité de l’eau dans les fosses de mines à ciel ouvert. Ces fosses sont généralement remplies d’eau après la fin des activités minières et contiennent des résidus miniers et des stériles susceptibles de libérer des métaux lourds et d’acidifier l’eau. Le projet se concentrera sur l’évaluation de l’efficacité du Bauxsol™ à neutraliser l’acidité et à immobiliser les métaux lourds, comme le fer, l’aluminium et le manganèse, pour éviter qu’ils ne contaminent l’eau des fosses. L’objectif est de proposer une solution durable pour la gestion des sites miniers après leur fermeture, en réduisant les impacts environnementaux à long terme. De plus, le Bauxsol™ présente l’avantage d’être un produit dérivé de déchets industriels, ce qui permettrait de réduire les coûts associés à l’achat de produits chimiques traditionnels, tout en valorisant ces résidus. Les résultats attendus du projet pourraient ainsi offrir à l’organisation partenaire une approche innovante et rentable pour la restauration des sites miniers, contribuant à une gestion plus responsable des ressources et à une réduction de l’empreinte écologique des activités minières.

Voir la description complète du projet
Superviseur du corps professoral :

BenoÎt Plante

Étudiant :

Partenaire :

Centre de recherche et de développement d’Arvida

Discipline :

Engineering

Secteur :

Manufacturing; Professional, scientific and technical services

Université :

Université du Québec en Abitibi-Témiscamingue

Programme :

Accelerate

Smart MLOps: Supporting Machine Learning Pipelines with Drift Detection and Model Adaptation

This project aims to enhance responsible AI in dynamic environments by leveraging data drift detection and model adaptation techniques. By collaborating with IFS Canada, this project seeks to synergize academic exploration with real-world application, creating a dynamic partnership that bridges the gap between theoretical advancements and practical solutions. This project, focused on developing reliable AI solutions, seamlessly aligns with IFS’s core values of innovation and optimizing business processes. Key among IFS’ principles is ‘Trust’. In this collaboration, we commit to reinforcing this value by prioritizing AI model reliability and transparency. Through rigorous validation and accountability, our research aims to create AI models that consistently deliver accurate insights. This mirrors IFS Canada’s ‘Trust’ value, reinforcing their reputation as a dependable provider of enterprise software solutions.

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Superviseur du corps professoral :

Olga Baysal

Étudiant :

Partenaire :

IFS Canada

Discipline :

Computer science

Secteur :

Information and cultural industries

Université :

Carleton University

Programme :

Accelerate

Amélioration de l’analyse de la qualité des semences bovines par cytométrie.

DMV GénétiQ est une PME qui œuvre dans le domaine de la reproduction animale spécifiquement en exploitant un centre de récolte de semence de taureaux. Ses activités se résument en la récolte, la congélation, le sexage de la semence ainsi que la vente au niveau local et international. Chez DMV GenetiQ, les taureaux sont des sujets génétiquement supérieurs qui transmettent leurs qualités à leur progéniture, ce qui se traduit par une augmentation des performances à l’intérieur des troupeaux où leur semence est utilisée. La congélation de la semence de taureaux demeure un défi important et les résultats de nos recherches antérieures nous ont permis de mettre au point des procédés de cryopréservation améliorés. Nous voulons poursuivre sur cette lancée, en évaluant l’effet du plasma riche en plaquettes sur certaines structures précises des spermatozoïdes ainsi que sur leur motilité. La recherche au niveau de notre entreprise est d’une importance primordiale. C’est un domaine dynamique et en constante évolution et les avancées qui en découlent nous permettent de développer de nouveaux procédés et/ou produits. La recherche agit comme un moteur d’innovation et se veut un levier incontournable pour la croissance d’une entreprise.

Voir la description complète du projet
Superviseur du corps professoral :

Guylain Boissonneault

Étudiant :

Partenaire :

DMV GenetiQ Services Inc.

Discipline :

Life Sciences

Secteur :

Agriculture

Université :

Université de Sherbrooke

Programme :

Accelerate

CLIMB: Co-operators LLM-driven Interface to MLOps for Business

Machine Learning (ML)-based software quickly becomes complex due to being developed by multiple teams using different programming languages, with documentation stored in various locations. This complexity introduces communication and collaboration challenges, specially due to the fact that Co-operators Business Intelligence department manages over 1,150 assets, which includes ML models, APIs, databases, and more. The current tool for centralizing information, BAM PowerApps, suffers from performance issues, which limits its adoption by developers. Consequently, when maintaining and integrating code into ML projects, developers still face challenges in finding information and documents from other teams. The objective of the project is to compare the User Experience (UX) of using the Co-operators’s BAM PowerApps interface against the proposed CLIMB Chatbot for finding relevant information. This chatbot tool applies advanced AI techniques, such as Large Language Models and Retrieval-Augmented Generation, to find information quickly and easily across multiple document. If the CLIMB Chatbot demonstrates superior usability and faster query resolution, the BI department can streamline operations, reduce time spent search for information, enhance cross-team collaboration, and prevent duplicated work. This efficiency gain will allow developers to focus on higher-value tasks, resulting in improved productivity.

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Superviseur du corps professoral :

Benoit Baudry

Étudiant :

Partenaire :

Co-operators (Financial Services)

Discipline :

Computer science

Secteur :

Finance and Insurance

Université :

Université de Montréal

Programme :

Accelerate

The Discourse of Decentralization: Understanding the Influence of Political Competitionand Development Outcomes In India

Lokpriy is studying decentralization policies in the developing world, with a primary focus on India. His research topic is “Three Essays on Discourse of Decentralization: Understanding the Influence of Political Competition and Development Outcomes in India”. His research focuses on, examining the global political and economic context for decentralization and how the different components of political competition and decentralization impact public policy outcomes in India. He is particularly interested in the interaction of political competition and governance at the national and sub-national levels. Of particular importance are the ideas of emerging political competition, the development of new political parties and the interplay of political and governance institutions in determining the shape and nature of decentralization. The ultimate purpose of the study is to explore, within the context of a rapidly developing nation, how political competition affects public service delivery and, ultimately, the quality of public policy and policy outcomes/

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Superviseur du corps professoral :

Ken Coates

Étudiant :

Partenaire :

Tata Institute for Social Sciences

Discipline :

Sociology

Secteur :

Education

Université :

University of Saskatchewan

Programme :

Globalink Research Award

Desjardins-Rotman: Predicting Contributing Factors To Premium Leakage

Desjardins Insurance is a subsidiary of Desjardins Group and provides a broad spectrum of insurance products and services. This includes life insurance, auto insurance, home insurance, and various other types of coverage. It’s known for its strong presence in the Canadian insurance market and its commitment to customer satisfaction.

Our organization has been successful at identifying past instances where we collected the wrong client information regarding its automobile insurance policy leading to premium inadequacies and leakage. This can come from many different sources, including a simple misunderstanding of insurance processes all the way up to insurance fraud. Although we are able to timely flag policies that are most likely to have the wrong information and cause leakage, we still haven’t developed predictive models to better understand the contributing factors that can lead to this leakage. By providing a combination of different data sets and the indicator about a policy being flagged or not for leakage, we are expecting the Rotman students to use predictive analysis techniques to help us figure out which variables strongly contributes to having a policy being flagged or not. This information will equip leadership in many ways, as such – navigating decisions and will provide overall benefits from a performance lens, enhancing business practices, and behaviours that contribute to sustainable growth.

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Superviseur du corps professoral :

Gerhard Trippen

Étudiant :

Partenaire :

Desjardins Assurances Générales

Discipline :

Mathematics

Secteur :

Finance and Insurance

Université :

University of Toronto

Programme :

Business Strategy Internship