Terramechanics based Traction Prediction for Lunar Rover by High-Speed Granular Scaling Law

The development of lunar rovers requires research in terramechanics to understand the interactions between wheels and loose terrain. While extensive terramechanics research has been conducted on Earth, few studies have focused on adapting these findings to the Moon’s different gravity environment. This project will focus on the Granular Scaling Law (GSL), a recently utilized mechanical […]

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An Analytical Model of Thickness and Flatness Estimation for Tailor Rolled Blanks

Rolling is an important process in metal forming. Through the rolling process, metal billets are turned into sheets or strips for use or further processing. Due to worsening global environmental conditions and higher demands for industrial products, lightweight design has become a trend in fields like automotive and aerospace. Traditional rolled metal sheets and strips […]

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Study of environmental impact of activity recognition systems

This research project aims to analyze and compare the environmental impact of various architectures used in activity recognition systems, with a focus optimizing the balance between (enough) quality of service (QoS) and sustainability. Specifically, the project will focus on the data life-cycle that flows through the three distinct architectural approaches—device-based, edge-based, and cloud-based— considering the […]

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Smarter Microelectronics Packaging for Performance Scaling

This research project will investigate materials and process behaviors in microelectronic packages that are become increasingly dense and explore novel alternatives to accommodate such densities. When more components are placed and interconnected with each other in smaller and smaller spaces, traditional materials and methods for package assembly become difficult, if not impossible, to replicate. By […]

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RTL Implemetation of an HDC accelerator

This project aims to develop an RTL model for a programmable accelerator for hyperdimensional computing (HDC), a brain-inspired approach that uses high-dimensional vectors for data processing. HDC is particularly suitable for resource-constrained environments because it avoids complex matrix multiplications, relying instead on efficient bitwise operations that can be implemented on hardware like FPGAs or ASICs. […]

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Enhancement of MDAO Framework for Evaluating Fuel-Cell Propulsion and Impact on Aircraft ECS

The proposed project focuses on improving the design and analysis of sustainable aviation technologies by enhancing a Multi-disciplinary Design Analysis and Optimization (MDAO) framework. This framework will be used to evaluate alternative propulsion systems, such as hydrogen fuel cells and hybrid-electric solutions, and assess their impact on aircraft subsystems, including environmental control and thermal management […]

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Flame spray pyrolysis-induced direct deposition of plasmonic nanoparticles on TFBG optical fiber for sensing applications

The features of optical fibers and the fascinating properties of nanomaterials can be combined to result in an attractive new platform for chemical sensing. Flame Spray Pyrolysis (FSP) has distinct advantages for the assembly of chemoresistive gas sensors compared to their traditional synthesis methods. Modern photonic sensing devices such as tilted fiber Bragg grating (TFBG) […]

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Biodegradable Scaffolds with Enhanced Conductivity, EMI Shielding, and Mechanical Strength

Polylactic acid (PLA) is a biocompatible material widely used in 3D printing. However, its application in bone tissue engineering is limited due to slow degradation and inadequate mechanical strength. To address this, we propose a conductive, biodegradable scaffold incorporating calcium carbonate (CaCO3) to improve mechanical properties. Conductive elements, such as carbon-based materials, are added to […]

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Metering and Aggregation, and, Electrification of Buildings Part 2

With the pressing need to reduce energy from carbon emitting sources, electrification of buildings is a crucial step forward. Electrification requires identifying activities and equipment that use energy received from carbon emitting sources and transitioning them to electric alternatives. The proposed research focuses on developing methods and strategies to overcome challenges associated with building electrification […]

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Conception et développement d’outils automatisées pourcaractériser, modéliser et quantifier la morphologie dessystèmes ostéo-articulaires en trois dimensions à l’aide deplusieurs vues radiographiques

Les problèmes de douleur chronique reliés à des troubles musculosquelettiques affectent une grande partie de la population et les coûts directs (visite médicale, traitements, médicaments) et indirects (absentéisme au travail, productivité réduite) sur le système de santé sont extrêmement élevés. Pour améliorer le diagnostic, la planification chirurgicale et le suivi des pathologies de la colonne […]

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Data Collection and Model Development for Prosthetic Fitting using a Robotic Gait Simulator

ProsFit is a medical device manufacturing company that supports prosthetic clinic owners to radically improve productivity and user outcomes. Through innovation, ProsFit strives to provide limb wearers a choice of affordable, reliable and desirable prosthetic products and services. ProsFit has developed and is commercializing the solutions to provide improved mobility and quality of life to […]

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Kanin Energy-Heat Pump Feasibility Study

The project will consist of conducting a feasibility study and a preliminary design on the application of heat pumps for heavy industry to achieve decarbonization and economic objectives. Heat pumps can play a significant role in helping heavy industries achieve decarbonization by efficiently capturing and utilizing low-temperature waste heat, upgrading it to higher temperatures, and […]

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