Solar Wireless Electric vehical/Inspire Award Project/Solar car/science project kit/Diy Project/Final year electrical project

1. Introduction: In today’s world, the growing concern for environmental sustainability has led to the development of renewable energy solutions. Electric vehicles (EVs) have gained popularity as an eco-friendly alternative to traditional gasoline-powered cars. However, one of the challenges faced by EV owners is the limited range due to battery constraints. To address this issue, we have developed a groundbreaking project – a solar-powered wireless charging system that can provide emergency charging to electric vehicles using a remote-controlled (RC) robotic car.
₹3,999.00 Original price was: ₹3,999.00.₹3,300.00Current price is: ₹3,300.00.
In a world ever more conscious of environmental sustainability and energy-efficient transportation, the Solar-Powered Wireless Charging System for Electric Vehicles emerges as a pioneering project. This innovation combines cutting-edge technology, harnessing 6V solar power, to charge a 4.5V battery in a specially designed solar car. Equipped with four 4V motors for forward and reverse movement, this vehicle is controlled by a standard RC transmitter and receiver. A standout feature is the integration of a wireless charging system at the rear, enabling this solar car to provide wirelessly charged energy to other electric vehicles in need, revolutionizing how we envision eco-friendly transportation.
In this project report, we delve into the intricacies of our Solar-Powered Wireless Charging System, exploring each component’s functionality and synergy. We will discuss solar power generation, battery management, electric propulsion, remote control technology, wireless charging principles, system integration, testing, and real-world applications. The project’s ultimate goal is to not only showcase a sustainable mode of transportation but to pave the way for a future where electric vehicles can support each other in times of need.
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Design and Operation: VAWTs typically consist of two or more blades that rotate around a vertical axis. The blades can have different shapes, such as straight, helical, or S-shaped, and are attached to a central shaft. As the wind blows, the blades capture the kinetic energy and convert it into mechanical rotation, which can then be used to generate electricity through a generator or to perform other tasks directly.
Welcome to our Smart Inverter Project tutorial! In this video, we’ll show you how to build a DIY inverter that provides an automatic power backup solution for your home. If you’re looking for a continuous power supply during outages, this inverter with battery storage will keep your lights on even when the main power goes out.
This project involves creating a smart inverter circuit that can seamlessly switch from AC power to a 12V DC battery when the electricity supply is interrupted. Not only does it ensure uninterrupted power to your 230V AC appliances, but it also recharges the battery when the main power is available.
In this detailed how-to guide, we cover everything from the basic components needed to the step-by-step assembly and testing of the inverter. Plus, we’ll discuss how this inverter system can be adapted for use in transmission lines, ensuring a reliable power supply to cities from substations, even if the main transmission line fails temporarily.
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Relay Modules: Each IR sensor is connected to a relay module. When all three sensors detect vehicles simultaneously, they activate their respective relays.
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this project use materials name – Glass , Ir Sensor , Pcv Plate , Alarm , 1K resostor , 9v Cap , 9v Battery , Jumper Wire , Glue Road , Soldering Powder , Screwdriver
I will Provide You All Components Parts Machine Tools And Decoration Materials Available In Kit Box .I will Provide You Full Step By Step Making Video with 3D Cicuit Diagram , Report File , Synopsis File , PPT
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