Engineering
Projects
Welcome to my Projects page! Here, you’ll find a showcase of the academic and personal projects that reflect my passion for solving real-world problems through innovative engineering solutions. Each project highlights my technical expertise, problem-solving skills, and hands-on experience with tools like SolidWorks, AutoCAD, MATLAB, and more.
From designing an autonomous water skimmer to developing a rehabilitation tool for injury recovery, these projects demonstrate my ability to apply engineering principles to practical challenges. I invite you to explore the details of each project, including the methodologies, tools, and outcomes, to see how I approach design, analysis, and optimization in engineering.
I’m excited to bring the same dedication and creativity to future opportunities and look forward to applying these experiences to new challenges as part of a professional team. Let’s build the future together!

The Strike Board was developed as part of my MECH 2502: Instrumentation and Measurement Techniques course. This project aimed to assist injured boxers and rehabilitation patients by improving their form and tracking their progress.
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Sensors Used
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Resistive force sensors to measure punch force and location.
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Accelerometers to track speed and wrist rotation.
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Data Analysis
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Utilized LabVIEW to display real-time performance metrics, including force, acceleration, and punch accuracy.
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Outcome:
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Successfully designed a system that provides precise feedback to users, enhancing recovery and performance.
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Learned to integrate sensors, perform signal conditioning, and optimize system functionality.
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This project strengthened my sensor integration, data acquisition, and ergonomic design skills while fostering my ability to solve complex engineering challenges.
Boxing Rehabilitation Tool
(Strike Board)

The E-Bike Design was created during my MECH 3409: Machine Elements Design course. This project focused on creating an environmentally friendly e-bike that is user-friendly, durable, and efficient.
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Design Features
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Frame: Triangular structure made of AISI 4130 steel for superior strength, fatigue resistance, and a classic bicycle aesthetic.
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Gearbox: Converts motor speed (700 RPM) to a maximum speed of 30 km/h using optimized gear ratios, designed and analyzed with SolidWorks and AGMA standards.
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Analysis:
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Conducted finite element analysis (FEA) to verify frame integrity under various loading conditions
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Performed stress and fatigue life calculations to ensure long-term durability.
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Outcome:
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Designed an e-bike capable of daily use for 10 years, meeting safety standards and environmental sustainability goals
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This project Enhanced my skills in CAD modeling, load analysis, and sustainable design., reinforced my ability to apply engineering principles to real-world challenges while strengthening my teamwork and problem-solving capabilities.
Sustainable and Accessible
E-Bike Design

The Toronto Portlands Waste Management Project was developed to address the environmental and public health challenges of floating waste in Port Toronto's waterways. This social impact initiative aimed to enhance waste collection efficiency, reduce maintenance, and promote sustainable practices.
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Design Features:
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Autonomous Water Skimmer: Solar-powered and guided by ultrasonic sensors to navigate, avoid obstacles, and collect debris efficiently.
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Docking Station: An eco-friendly hub for trash deposition, sorting, and recycling.
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Objectives and Impact
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The project aimed to improve water quality, protect aquatic ecosystems and enhance the aesthetic appeal of Toronto’s harbours. reducing health risks, fostering environmental sustainability, and aligning with the United Nations Sustainable Development Goals (SDGs).
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The autonomous system showcased potential for revolutionizing waste management in waterways. This project strengthened my skills in sustainable design, CAD modeling, and teamwork, reinforcing my ability to apply engineering principles to real-world environmental challenges.
Social impact project
Toronto Portlands Waste Management

MINI DESIGN II
Design and Build an Arduino-controlled Internet of Things-based Floating Sun-tracking Mini Solar Pane
IN PROGRESSSS