Power generation using the magnetic force of the magnets in solar panels.

Indoor stacking of thin resin panels with embedded magnets addresses the limitations of solar panels by enabling continuous electricity generation and efficient land use, reducing environmental impact.

JP2026055748APending Publication Date: 2026-03-31葉末 修造
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Solar panels powered by sunlight are limited to outdoor installation, cannot generate electricity at night or on rainy days, and require a large area for significant power generation, with reduced capacity per sheet when using magnetic force.

Method used

Stacking thin resin panels with embedded magnets indoors, using a case and stabilizing stand to create a high-density installation, allowing 24-hour electricity generation.

Benefits of technology

Generates electricity continuously indoors, reduces land requirements, and maintains performance over time, contributing to reduced CO2 emissions and efficient power production.

✦ Generated by Eureka AI based on patent content.

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Abstract

We provide a power generation system that can generate electricity indoors in a building 24 hours a day, year-round. [Solution] Indoors, a strong magnetic sheet (board) is placed in close contact with the cell surface of a solar panel, and this is repeatedly stacked to create hundreds of sheets in one place, allowing for the installation of a large number of panels within a large building.
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Description

Detailed Description of the Invention

Technical Field

[0001] In the current solar panel power generation, it is mainly powered by sunlight. Therefore, it needs to be installed outdoors where sunlight shines. The present invention is an invention that can generate electricity for 24 hours throughout the year by the magnetic force of magnets indoors for solar panels.

Background Art

[0002] Currently, since solar panel power generation is powered by sunlight outdoors, it cannot generate electricity at night or on rainy days. Also, to generate a large amount of electricity, a vast area of land is required. Problems to be Solved by the Invention

[0003] In power generation by the magnetic force of magnets in solar panels, compared with power generation by sunlight, depending on the solar panel product, the power generation capacity per sheet drops to about one-tenth to one-fifteenth. In order to overcome this, it is necessary to stack a large number of panels in one place for power generation for 24 hours throughout the year indoors. Means for Solving the Problems

[0004] Currently, solar panels that are powered by sunlight are manufactured on the premise of being installed outdoors and are reinforced with tempered glass or aluminum frames to withstand natural wind and rain, so they are about 4 cm thick. In the present invention, indoors, since the panels are just placed in a case and stacked, resin panels with a thickness of about 5 mm have sufficient strength, and hundreds of sheets can be stacked in one place.

Modes for Carrying Out the Invention

[0005] To stack the solar panels (1) high, prepare a case (3), lay the first panel on top with the cells facing upwards, place a magnetic sheet (2) on top of it with the cells facing downwards, and then place the second panel on top with the cells facing downwards. In other words, by sandwiching the panels between two other panels, stacking about 10 to 15 sets inside a case, and using a stabilizing stand (4) for each case to prevent it from tipping over, the cases can be stacked to a height of about 2m, allowing for the installation of approximately 300 panels. Effect of the Invention

[0006] (1) Because it can generate electricity without emitting CO2, which is currently a global problem, it can be useful in combating air pollution and global warming. (2) It can generate electricity 24 hours a day, year-round, regardless of whether it is nighttime or rainy. (3) Generating large amounts of electricity using solar power requires a vast area of ​​land. This invention solves the problem by increasing the number of floors in the building. (4) Once installed, magnetic sheets are considered economical as they continue to function without changing performance over a long period of time. [Brief explanation of the drawing]

[0007] [Figure 1] A diagram illustrating a magnetic sheet sandwiched between the surfaces of two solar panels. [Figure 2] A case for storing more than 10 sandwich-type solar panels stacked on top of each other. [Figure 3] A stabilizing stand to prevent shifting when stacking cases in multiple layers. [Figure 4] A diagram showing cases containing solar panels stacked on a stabilizing stand. [Figure 5] Front view showing cases containing solar panels stacked on top of the shelves inside the box, with batteries and inverters placed on the bottom shelves. [Explanation of Symbols]

[0008] (1) Solar panels (2) Magnetic sheet or board (3) Case (4) Case stacking stabilizing platform (5) Stacking of cases (6) Box (7) Battery (8) Inverter (AC power converter)

Claims

1. Indoors, a strong magnetic sheet (board) is placed in close contact with the cell surface of a solar panel, and this is repeatedly stacked, with hundreds of sheets piled up in one place. A device that installs a large number of panels within a large building to generate a large amount of electricity 24 hours a day, throughout the year.

2. Compact solar panels are stacked inside a box in the same manner as in claim 1. The system generates electricity, charges a battery, and then uses an inverter to function as a power source even in places without electrical wiring.

Citation Information

Patent Citations

  • Solar battery module and its trouble detection method

    JP1994125105A

  • Flexible solar cell module and fixing mechanism thereof

    JP2012238680A