Electric gyroscopic bike with self charging & self stability system.
Our Team Advisor: Dr. Shahid Bakar Group Leader : Abbas Ali 11418 Members: Usman Wazir 12736
—William J. Mitchell “Imagine a kind of system where you have lightweight electric vehicles relatively small battery capacity, and then picking up charge wherever they park. You never have to worry about filling up your car.”
Intro duction Introducing the future of urban commuting, the Electric Gyroscopic Bike with Self-Charging and Self-Stability System. This groundbreaking innovation combines cutting-edge technology to revolutionize the way we navigate through bustling city streets. Designed to enhance both convenience and safety, this electric bike utilizes gyroscopic stability to effortlessly balance itself, ensuring a smooth and steady ride for all users. What sets this bike apart is its integrated self-charging mechanism, harnessing kinetic energy during movement to power the bike's electric motor, extending your journey while reducing environmental impact. Say goodbye to the limitations of traditional bikes and embrace a new era of sustainable, self-stabilizing transportation with the Electric Gyroscopic Bike.
Bike Working The Electric Gyroscopic Bike conserve momentum to maintain balance while riding. This bike recharge itself, provide stability and good range. A Battery Management System controls the charging process, ensuring efficient utilization and preventing overcharging. This innovative system offers a stable, self-charging, and eco-friendly riding experience.
T here are many accidents just due to balancing and stability issues plus its not suitable for all age bracket peoples. The dependency on fossil fuels for transportation has led to pollution and resource depletion. Electric bikes emerge as a crucial solution by offering emission-free rides and reducing our carbon footprint. Embracing electric bikes is a vital stride towards a cleaner and greener future. Problem
Solution Electric gyroscopic self charging and self stability bikes offer a stability and sustainable solution by relying on renewable electricity instead of fossil fuels. This reduces emissions, lessens environmental impact, and promotes a greener mode of transportation.
Them Us Fuel-powered bikes have drawbacks including emissions, dependence on fluctuating fuel prices, complex maintenance, noise pollution, and limited infrastructure. These challenges underscore the need for cleaner and more sustainable transportation solutions. Electric bikes are advantageous due to their zero emissions, cost-effectiveness, quiet operation, health benefits, and adaptability to different terrains. They have a smaller carbon footprint, promote active commuting, and offer convenient charging options. By reducing reliance on fossil fuels, electric bikes contribute to sustainable and eco-friendly transportation.
S W O T SWOT analysis Innovation, Sustainability Convenience, Efficiency Market Demand, Partnerships Technological, Advancements Weaknesses Complexity, Initial Cost, Maintenance Opportunities Strengths Threats Competition, Regulation Awareness
Case Study Challenge Results Solution Stability It’s very difficult to balance a bike without any support. We use gyroscope use maintain the stability of our bike. Recharging Battery It’s tough to recharge a battery without any external source. We increase the RPM of the wheels so it can recharge the battery more efficiently without any solar or external source. Over Charging Of Battery If we recharge our battery automatically so it”s a high chance of over charging and explode the battery or damage it. We use BMS ( Battery Management System). The BMS regulates the charging process to prevent overcharging, which could lead to battery degradation, reduced capacity, or even safety hazards.
Design and Engineering Technological Integration Testing and Optimization Manufacturing and Market Launch Develop a sleek and ergonomic frame design Integrate gyroscopic sensors and actuators. Design a user-friendly Battery Management System (BMS) Integrate regenerative braking technology to capture kinetic energy during deceleration and convert it into electrical energy for self-charging. Implement advanced control algorithms that ensure seamless interaction between self-stabilization and self-charging systems. Conduct rigorous testing of the self-stabilization system under various road conditions to ensure safety and reliability. Launch the bike in key markets, targeting environmentally conscious consumers and urban commuters seeking a sustainable and hassle-free transportation option. Project model
Gyroscopic Stability System Self-Charging Mechanism Battery Management System (BMS) Essential parts: stability, charging, management, integration, interface, manufacturing, launch. Electric Gyroscopic Bike 75% 75% Project infographics...
Design Flowchart Front Tyre Fly Wheel Gear Battery Motor Back Tyre Fly Wheel
Project Cost Effect This budget is for our research & manufacturing of bike chasis. T his budget is for making all equipments, electronics, gyro, batteries, flywheel etc. T his budget if for assembling, manufacturing losses, marketing. RS 50000 RS 1 00,000 RS 3 0,000