Universal Power Generating System with Wind-Driven Electromagnetic Conversion
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Solution Overview
Problem
Current power generating systems face inefficiencies and environmental concerns, with most producing around 35% waste and relying on non-renewable sources, while existing alternatives fail to provide a comprehensive, economical, and environmentally safe solution to the global energy crisis.
Innovation Solution
A universal power generating system utilizing a rechargeable battery bank, electromagnetic generator systems, ultracapacitors, and propellers with permanent magnetic elements, which converts mechanical energy from wind force into electrical energy, achieving 90% efficiency by recycling unused energy and minimizing waste, and is applicable in various settings including residential, commercial, and industrial use.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of energy
If conventional power generating systems are used, then power generation is achieved, but energy efficiency is low with approximately 35% waste
Solution Approach 1:
The patent recovers unused energy from the power generation process and feeds it back into the system through a battery bank. The electromagnetic generator produces electricity that charges rechargeable batteries, which then supply power during periods of low generation, effectively recovering and reusing energy that would otherwise be wasted.
Solution Approach 2:
The system implements a feedback mechanism where the electromagnetic generator continuously charges the battery bank based on available energy from various sources (wind, water, solar). The computer monitoring system tracks energy levels and automatically manages power distribution, creating a self-regulating feedback loop that optimizes energy efficiency.
2Adaptability or versatility
If multiple power generation components are integrated, then system versatility increases, but device complexity increases
Solution Approach 1:
The patent creates a universal power generation system that can operate with multiple different energy sources (wind turbines, water wheels, solar panels) but requires only one electromagnetic generator and battery bank configuration. The system is designed to accept various input types while maintaining a standardized output interface, reducing complexity despite high versatility.
Solution Approach 2:
The patent combines multiple energy capture mechanisms (propellers for wind, water wheels for hydro, solar panels) with a single electromagnetic generation system and unified battery storage. The computer control system merges monitoring and management functions into one centralized unit, simplifying the overall system architecture while maintaining multi-source capability.
3Object-affected harmful factors
If existing power generation devices are used, then power supply is provided, but environmental safety is compromised
Solution Approach 1:
The patent converts previously wasted energy into a beneficial resource by capturing unused electrical output and storing it in the battery bank for later use. This transforms what would be harmful waste energy into a useful power source, eliminating the need for additional generation that might harm the environment.
Solution Approach 2:
The system is designed to be self-sufficient by using renewable energy sources (wind, water, solar) that do not deplete natural resources or harm the environment. The battery storage enables the system to serve itself during periods when primary sources are unavailable, eliminating the need for fossil fuel backup generators.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The system significantly increases power generating efficiencies, reduces environmental impact, and is cost-effective with minimal maintenance, capable of replacing or enhancing existing energy systems, while extending the life of energy sources when used with fuel cells.
Implementation Method 1
The electromagnetic generator systems convert mechanical energy generated from rotation of the shaft to electrical energy
Implementation Method 2
The hubs also comprise permanent magnetic elements
Implementation Method 3
The fan blades are shaped to cause the hubs, and therefore the shaft to rotate by wind force
Implementation Method 4
The plurality of rechargeable batteries has electrochemical reactions that are electrically reversible
Data Source
AI summary
A universal power generating system, having a rechargeable battery bank with a plurality of rechargeable batteries; a computer; and an outside power source. The outside power source has a shaft, propellers are fixedly mounted onto the shaft. The shaft extends through electromagnetic generator systems. The universal power generating system also has at least one ultracapacitor and electrical circuitry. Fixedly mounted onto the shaft are hubs, each of the hubs have fan blades mounted thereon and permanent magnetic elements. The fan blades are shaped to cause the hubs, and therefore the shaft to rotate by wind force. The electromagnetic generator systems convert mechanical energy generated from rotation of the shaft to electrical energy that flows to a rotary alternative inverter, to a transformer and a power supply through electrical wiring and to the rechargeable battery bank. The at least one ultracapacitor provides power for electrical components of a vehicle.


