Busbar Static Charge Injection for Net AC Energy Gain
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Solution Overview
Problem
Existing methods for generating electrical energy often result in energy output that is equal to or less than the energy input, failing to achieve a net energy gain.
Innovation Solution
The method involves converting alternating or direct current into static electric charges, which are then transferred to conductors to generate a net energy gain by adding the voltage of the static electric charges to the original current, maintaining increased ampere, thereby creating a continuous energy output.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of energy
If conventional methods for generating electrical energy are used, then energy can be produced, but the energy output is equal to or less than the energy input, failing to achieve net energy gain
Solution Approach 1:
The patent changes the state of electrical energy from moving current to static electric charges, and then back to moving current with increased parameters. By converting AC/DC to static charges and then back to current, the system aims to produce output current with higher amplitude and voltage than the input, achieving net energy gain through parameter transformation
Solution Approach 2:
The system is designed to accept multiple types of input current (AC or DC) and produce enhanced output current that can be used for multiple purposes. The apparatus performs multiple functions: conversion to static charges, energy accumulation, and conversion back to moving current with increased parameters, making it a multi-functional energy generation system
2Duration of action of stationary object
If electrical energy is generated through conventional means, then power can be produced, but the system cannot operate continuously without energy input equal to or greater than output
Solution Approach 1:
The patent describes a system that can operate continuously 24 hours a day, 7 days a week, producing net energy gain. The conversion process from moving current to static charges and back creates a continuous cycle that sustains operation without requiring external energy input equal to or greater than output, enabling indefinite continuous operation
Solution Approach 2:
The system is designed to be self-sustaining, where the output energy from the conversion process feeds back to maintain continuous operation. The apparatus converts its own output current through the static charge intermediary to produce enhanced current, creating a self-service cycle that maintains continuous operation without external energy supplementation
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
This approach enables the production of limitless electrical energy with a net gain, capable of producing hectowatts, kilowatts, megawatts, gigawatts, and terawatts, and operates continuously.
Implementation Method 1
one or more step up transformers (and/or one or more voltage multipliers)
Implementation Method 2
the current(s) from the alternating current and/or direct current output(s) of the step up transformer(s) and/or voltage multiplier(s) is converted to static electric charges
Data Source
AI summary
Methods for generating net energy gain of electrical energy, one method compromises one or more sources of alternating current to simultaneously transfer alternating current(s) directly to one or more electrical busbars (and/or one or more zero sided to twenty sided shape electrical conductors applied in the same manner as electrical busbars) and one or more step up transformers (and/or one or more voltage multipliers); the current(s) from the alternating current and/or direct current output(s) of the step up transformer(s) and/or voltage multiplier(s) is converted to static electric charges, while maintaining it's increased voltage(s); the increased voltage(s) static electric charges will then make contact with the electrical busbar(s) (and/or one or more zero sided to twenty sided shape electrical conductors applied in the same manner as electrical busbars) that has the alternating current(s) flowing through; creating a net energy gain of alternating current(s).


