Magnetic rotation power generator and power generation technology thereof
By using a magnetic gyroscope generator to drive the rotation of a magnetic disk through a magnetic assembly structure, the generator outputs electricity, provides power compensation, and stores energy in three ways, solving the problems of environmental impact and resource dependence of existing power generation technologies and achieving self-sustaining high-efficiency power generation.
Patent Information
- Application Number
- CN202511317130.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2025-11-14
AI Technical Summary
Existing power generation technologies have negative environmental impacts and rely on limited or unstable natural resources, making it difficult to generate electricity sustainably and efficiently.
The system employs a magnetic rotary generator, which drives the magnetic disk to rotate through a magnetic assembly structure. The generator generates electricity and outputs it in three ways through an output power distribution regulator, including power output, power compensation, and energy storage, thus achieving self-sustaining power generation.
It achieves long-term self-sustaining power generation without consuming macroscopic matter and resources, reducing environmental impact and improving power generation efficiency and stability.
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Figure CN120955978A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of generator technology, specifically to a magnetic rotary power generator and its power generation technology. Background Technology
[0002] The defects of various contemporary power generation technologies are influenced by various factors, and the specific defects are as follows:
[0003] 1. Thermal power: Thermal power mainly uses coal, natural gas and geothermal energy. Coal and natural gas are limited natural resources. Moreover, coal produces various exhaust gases that pollute the atmosphere during use, increasing the global greenhouse effect and reducing the habitability of the earth. Geothermal energy is the heat inside the cracks in the earth's crust, and its thermal energy level is limited.
[0004] 2. Hydropower, which relies on the potential energy of water level elevation, is affected by the four seasons and cannot be fully utilized during the dry season. Moreover, dams block water systems, affecting the stable and long-term survival of biological ecosystems.
[0005] 3. Wind power is the potential energy of the Earth's atmosphere. Due to the influence of atmospheric circulation, it cannot output electrical energy at full power in a steady state, and many non-natural objects need to be installed in nature.
[0006] 4. Solar photovoltaic, which relies on the potential energy of solar thermal radiation, cannot output full power if there is no sunlight due to climate. It requires the installation of many non-natural objects in nature, and the disposal of a large number of photovoltaic panels is difficult after the end of their life cycle.
[0007] 5. Nuclear power is divided into nuclear fission and nuclear fusion. Nuclear fission releases radiative heat energy through the splitting of nuclear structures, while nuclear fusion releases thermal potential energy during the polymerization of lighter substances. However, nuclear fission generates a large amount of radiation waves, causing long-term damage to the environment. Nuclear fusion releases a large amount of thermal potential energy, but its environmental impact is only slightly less than that of nuclear fission.
[0008] All of the above-mentioned power generation technologies will, to varying degrees, involve losses or alterations at the macroscopic level. Summary of the Invention
[0009] The technical problem to be solved by the present invention is to provide a magnetic rotary power generator and its power generation technology, addressing the shortcomings mentioned in the background art.
[0010] To solve the above-mentioned technical problems, the technical solution provided by the present invention is as follows: a magnetic rotary power generator, including a generator and a main circuit, wherein the generator's rotating end is provided with a magnetic rotary disk structure, and a plurality of magnetic groups are provided on the outside of the magnetic rotary disk structure for driving the magnetic rotary disk structure to rotate; the main circuit is externally provided with a power supply circuit that serves only as an initial starting power supply; the main circuit is provided with a power supply parallel circuit connected to the magnetic group structure; and a magnetic rotary force regulator is provided on the power supply parallel circuit.
[0011] The generator is equipped with an output main circuit, which is equipped with an output power distribution regulator. The output power distribution regulator is equipped with a power output circuit, an energy storage circuit, and a power compensation circuit to maintain the normal operation of the entire circuit.
[0012] Furthermore, the power compensation circuit forms a loop with the main circuit to maintain the normal operation of the entire circuit. The power compensation circuit is equipped with a power compensation regulator and a switching structure.
[0013] Furthermore, the energy storage circuit is provided with an energy storage structure at its end, and the energy storage structure is connected to the main circuit and can supply power to the main circuit.
[0014] Furthermore, the energy storage circuit is equipped with an output power compensation regulator and a linkage switch.
[0015] Furthermore, the generator is a magnetic levitation generator.
[0016] A novel power generation technology based on magnetic gyrodynamics and magnetic levitation includes the following steps:
[0017] Step 1: The power supply circuit, in conjunction with the magnetic force regulator, provides pulse-type power supply to start multiple parallel magnetic groups.
[0018] Step 2: The magnetic disk structure is rotated by multiple sets of magnetic groups to drive the generator to generate electricity;
[0019] Step 3: The electricity generated by the generator is stabilized by the output power distribution regulator and then output in three channels;
[0020] Step 4: The three outputs are: one output is used as the main circuit output through the power output circuit; another output is used to return to the main circuit through the power compensation circuit to maintain the normal operation of the entire circuit; and the third output is used to store energy in the energy storage device through the energy storage circuit. The energy storage device can be used as the power source for the next system startup.
[0021] The advantages of this invention compared to the prior art are as follows: This invention uses a magnetic assembly structure in conjunction with a magnetic gyroscope to drive the magnetic disk structure to rotate and generate electricity. The generator generates electricity through a three-way output power distribution regulator: one path for power generation, one path for maintaining normal system operation, and one path for energy storage to ensure the next circuit startup. This ensures that after the initial power supply circuit starts, the entire power generation system can maintain self-sustaining operation for a long time. The power generation energy is generated by the magnetic force of the magnet, without consuming macroscopic mass. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the control circuit structure of a magnetic rotary generator and its power generation technology.
[0023] As shown in the figure: 1. Generator; 2. Magnetic disc structure; 3. Magnetic assembly structure; 4. Power supply circuit; 5. Main circuit; 6. Parallel power supply circuit; 7. Magnetic force regulator; 8. Energy storage structure; 9. Output main circuit; 10. Output power distribution regulator; 11. Power output circuit; 12. Power compensation circuit; 13. Energy storage circuit; 14. Power compensation regulator; 15. Output power compensation regulator; 16. Switch structure; 17. Interlocking switch. Detailed Implementation
[0024] The present invention will now be described in further detail with reference to the accompanying drawings.
[0025] Electromagnetic force is one of the four fundamental forces in the universe. Magnetic field lines with the same poles repel each other. They exist and act in a microscopic state. This process itself does not consume or produce macroscopic matter from beginning to end, and is the most friendly to the macroscopic world's ecological environment (magnetic power generation is not a perpetual motion machine; it consumes the magnetic potential energy that circulates in the magnetic field in a microscopic state).
[0026] Combined with appendix Figure 1 A magnetic rotary generator and its power generation technology are disclosed, comprising a generator 1 and a main circuit 5. The generator 1 has a magnetic rotary disk structure 2 at its rotating end, meaning the generator and the magnetic rotary disk structure 2 are fixedly connected. Multiple magnetic assembly structures 3 are located on the outside of the magnetic rotary disk structure 2 to drive its rotation. The number and position of the magnetic assembly structures 3 can be adjusted and distributed according to the needs of the generator 1. The magnetic assembly structures 3 are located on the outside of the magnetic rotary disk structure 2. The main circuit 5 is externally connected to a power supply circuit 4, which serves only as an initial starting power source. The power supply circuit 4 can be various starting power sources and devices, but here it only serves as an initial power source for starting the entire power generation system in the initial stage. After the entire power generation system is started, the power supply circuit 4 is not required to provide additional power. Yes, the main circuit 5 is equipped with a power supply parallel circuit 6 connected to the magnetic assembly structure 3. The power supply parallel circuit 6 is equipped with a magnetic rotation force regulator 7, which is a pulse switch. By starting and stopping the magnetic assembly structure 3 in a high-speed phase, the magnetic disk structure 2 is driven to rotate at high speed. That is, the generator 1 is equipped with an output main circuit 9, and the output main circuit 9 is equipped with an output power distribution regulator 10. The present invention aims to add a magnetic disk structure 2 to the outer shaft of a general generator, drive the magnetic disk structure 2 to rotate at high speed through the corresponding magnetic assembly structure 3 and the magnetic rotation force regulator 7, and add an output power distribution regulator 10 to the output main circuit 9 of the generator 1. After stabilizing the voltage through the output power distribution regulator 10, the output is divided into three channels for operation.
[0027] The generator 1 mentioned is a magnetic levitation generator. Magnetic levitation generators are common market products, so they will not be described in detail. The main purpose of this application is to generate electricity by driving the generator rotor to rotate through magnetic rotation power. Traditional generators have relatively large resistance and generally low actual power generation efficiency. If a magnetic levitation generator with magnetic levitation bearings is used, the rotor resistance can be greatly reduced. Therefore, choosing a magnetic levitation generator as the generator of this magnetic rotation power generation structure can greatly reduce starting resistance, reduce rotor friction, and increase power generation.
[0028] Power generation technology includes the following steps:
[0029] Step 1: The power supply circuit 4, together with the magnetic force regulator 7, provides pulse-type power supply to start the multiple parallel magnetic group structures 3;
[0030] Step 2: The multiple sets of magnetic structures 3 drive the magnetic disc structure 2 to rotate, thereby driving the generator 1 to generate electricity;
[0031] Step 3: The electricity generated by generator 1 is stabilized by the output power distribution regulator 10 and then output in three channels;
[0032] Step 4: The three outputs are: one output is through the power output circuit 11 as the main circuit output, one output is through the power compensation circuit 12 to return to the main circuit 5 to maintain the normal operation of the entire circuit, and one output is through the energy storage circuit 13 to store energy in the energy storage device 8, which can be used as the power source for the next system startup.
[0033] Specifically: The output power distribution regulator 10 is provided with a power output circuit 11, which serves as the external main power generation output operation.
[0034] The output power distribution regulator 10 is equipped with a power compensation circuit 12 to maintain the normal operation of the entire circuit. The power compensation circuit 12 forms a loop with the main circuit 5 to maintain the normal operation of the entire circuit. The power compensation circuit 12 is equipped with a power compensation regulator 14 and a switching structure 16. That is, the output power distribution regulator 10 outputs a portion of electrical energy as the basic electrical energy to maintain the operation of the entire system. The power compensation regulator 14 and the switching structure 16 ensure the stability of the entire circuit.
[0035] The output power distribution regulator 10 is equipped with an energy storage circuit 13, and an energy storage structure 8 is provided at the end of the energy storage circuit 13. The energy storage structure 8 is connected to the main circuit 5 and can supply power to the main circuit 5. The energy storage circuit 13 is equipped with an output power compensation regulator 15 and a linkage switch 17. That is, a portion of the electrical energy output by the output power distribution regulator 10 is stored in the energy storage structure 8 as a storage power source, thereby facilitating the next system startup operation. This ensures that after the power circuit 4 initially consumes macroscopic matter, the entire system can achieve a self-sustaining power generation state without the need for external energy or the consumption of macroscopic matter, thereby minimizing the impact on the macroscopic world.
[0036] The present invention and its embodiments have been described above. This description is not restrictive. The accompanying drawings are only one embodiment of the present invention. The actual structure is not limited to this. In short, if a person skilled in the art is inspired by this description and designs a similar structure and embodiment without departing from the spirit of the present invention, such design should fall within the protection scope of the present invention.
Claims
1. A magnetic rotary power generator, comprising a generator (1) and a main circuit (5), characterized in that: The generator (1) has a magnetic rotating end with a magnetic disk structure (2). The magnetic disk structure (2) has multiple magnetic groups (3) on its outer side for driving the magnetic disk structure (2) to rotate. The main circuit (5) is connected to a power supply circuit (4) that serves only as the initial starting power supply. The main circuit (5) has a power supply parallel circuit (6) connected to the magnetic group structure (3). The power supply parallel circuit (6) has a magnetic rotation force regulator (7). The generator (1) is provided with an output main circuit (9), the output main circuit (9) is provided with an output power distribution regulator (10), the output power distribution regulator (10) is provided with a power output circuit (11), an energy storage circuit (13) and a power compensation circuit (12) to maintain the normal operation of the entire circuit.
2. The magnetic rotary power generator according to claim 1, characterized in that: The power compensation circuit (12) forms a loop with the main circuit (5) to maintain the normal operation of the entire circuit. The power compensation circuit (12) is equipped with a power compensation regulator (14) and a switch structure (16).
3. A magneto-rotary power generator according to claim 1, characterized in that: The energy storage circuit (13) is provided with an energy storage structure (8) at its end. The energy storage structure (8) is connected to the main circuit (5) and can supply energy to the main circuit (5).
4. A magneto-rotary power generator according to claim 1, characterized in that: The energy storage circuit (13) is equipped with an output power compensation regulator (15) and a linkage switch (17).
5. A magnetic rotary power generator according to claim 1, characterized in that: The generator (1) is a magnetic levitation generator.
6. The power generation technology of the motor according to claims 1-5, characterized in that: It includes the following steps: Step 1: The power supply circuit (4) works with the magnetic force regulator (7) to start the multiple parallel magnetic group structures (3) with pulse power supply; Step 2: The magnetic disk structure (2) is driven to rotate by multiple sets of magnetic group structure (3) to drive the generator (1) to generate electricity; Step 3: The electricity generated by the generator (1) is stabilized by the output power distribution regulator (10) and then output in three directions; Step 4: One of the three outputs is output through the power output circuit (11) as the main circuit output, one is returned to the main circuit (5) through the power compensation circuit (12) to maintain the normal operation of the entire circuit, and one is stored in the energy storage device (8) through the energy storage circuit (13). The energy storage device (8) can be used as the power source for the next system startup.