motor generator

The motor-generator system addresses pollution and inefficiencies in conventional power generation by using magnetic levitation and electromagnetic effects for efficient, low-loss power generation in a vacuum environment, enabling flexible installation and high output with minimal input.

JP2025525624AInactive Publication Date: 2025-08-05郭树雄
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Patent Information

Application Number
JP2025503330
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2022-08-08
Filing Date
2023-03-20
Publication Date
2025-08-05
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Conventional power generation technologies are prone to pollution, environmental restrictions, and energy loss, and require large installations with difficult maintenance and long-distance transmission, posing health risks and inefficiencies.

Method used

A motor-generator system utilizing magnetic levitation and electromagnetic effects for low-loss power generation, operating in a vacuum environment to minimize friction and pollution, with a control mechanism for efficient power output adjustment.

Benefits of technology

The system achieves high power output with minimal input, reduces environmental impact, and allows flexible installation sizes and locations, minimizing energy loss and health risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a motor generator that is not subject to environmental restrictions and has green energy effects. [Solution] The electric generator of the present invention comprises a housing, a vacuum-state storage space, a magnetically levitating rotating member, a plurality of first levitating magnetic members and first orbiting magnetic members, and a plurality of second levitating magnetic members and second orbiting magnetic members. The magnetically levitating rotating member is driven and rotated by a structure similar to a linear motor, like a magnetically levitating turntable. A power-generating rotating unit is connected to the magnetically levitating rotating member and rotates driven by the magnetically levitating rotating member. A plurality of power-generating magnetic members are installed on the power-generating rotating unit. The housing is equipped with a plurality of power-generating coils arranged on one side of the power-generating magnetic member, thereby forming a power generation structure. A power supply device controls the state of the magnetically levitating rotating member by supplying current to the second levitating magnetic member and the second orbiting magnetic member, and the output value is 10 million times larger than the input value, creating an amplifier-like effect of producing a large power output with a small power input, thereby achieving the objective of the electric generator of the present application and not violating the law of conservation of energy.
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Description

[Technical Field]

[0001] The present invention relates to a motor-generator that is not subject to environmental restrictions and has green energy effects. [Background technology]

[0002] Before the Industrial Revolution, the Earth was clean and pollution-free. However, with the development of industry, the Earth began to become polluted. Reckless energy development and the widespread adoption of transportation led to increasingly serious problems with air quality in living spaces and pollution from exhaust fumes generated by industrial production. Today's technologically advanced world relies on large amounts of electrical energy, and the massive demand for energy has led to ever-increasing amounts of exhaust fumes generated by the combustion of this energy. While nuclear power plants do not produce exhaust fumes, spent fuel rods still pollute the Earth, and accidents at nuclear power plants exacerbate the pollution. Nuclear power plant accidents in Japan and Russia have caused permanent damage to the Earth.

[0003] Furthermore, regardless of the power generation method, most power plants require a very large site to build, cannot be installed arbitrarily in various locations or regions, and maintenance and repair are very difficult. Furthermore, all existing power plants require long-distance transmission of electricity, and in order to reduce transmission losses, the voltage is raised to tens of thousands of volts. However, high-voltage transmission not only results in energy loss, but also has the potential to affect the health of people in the vicinity, as people living along the line may develop blood cancer due to the low-frequency ionizing radiation generated by the high-voltage current. Summary of the Invention [Problem to be solved by the invention]

[0004] In view of the above drawbacks, the main object of the present invention is to provide a motor-generator that is not subject to environmental restrictions and has green energy effects.

[0005] The magnetic levitation effect and linear motor-like driving effect enable low-loss power generation, and by combining electromagnetic effects, electrical energy can be generated more efficiently, achieving an amplifier-like effect that produces large power output with small power input in a low-loss manner. [Means for solving the problem]

[0006] The invention will be described below. The motor generator described in claim 1 mainly comprises a housing, an accommodation space formed within the housing and having a vacuum inside, a magnetically levitated rotating member installed within the accommodation space, a plurality of first levitating magnetic members installed on the magnetically levitated rotating member, a plurality of second levitating magnetic members installed on the housing and positioned corresponding to the plurality of first levitating magnetic members, which push the magnetically levitated rotating member into a magnetically levitated state by a magnetic levitation effect, a plurality of first orbiting magnetic members installed on the magnetically levitated rotating member, a plurality of second orbiting magnetic members installed on the housing and positioned corresponding to the plurality of first orbiting magnetic members, which drive the magnetically levitated rotating member to rotate by a magnetic force, and a plurality of magnetic The housing includes a generator rotating unit connected to the levitating rotating member and arranged within the accommodation space, a plurality of generator magnetic members installed on the generator rotating unit, a plurality of generator coils installed on the housing and located on one side of the plurality of generator magnetic members, and generating induced current in combination with the plurality of generator magnetic members, an energy storage device electrically connected to the generator coils, a power supply device electrically connected to the generator coils, the plurality of second levitating magnetic members, and the plurality of second rotating magnetic members, receiving the current supplied by the generator coils and supplying current to the plurality of second levitating magnetic members and the plurality of second rotating magnetic members, and a state control member connected to the power supply device, for controlling the current supplied to the plurality of second levitating magnetic members and the plurality of second rotating magnetic members.

[0007] In the motor generator described in claim 2, the power supply device and the housing of claim 1 are information-connected to a condition monitoring device.

[0008] In the motor generator described in claim 3, the condition monitoring device and the condition control member in claim 2 are information-connected to an alert device.

[0009] In the motor generator described in claim 4, the magnetically levitated rotating member and the power generating rotating part of claim 1 rotate in a vacuum environment formed in the accommodation space.

[0010] The motor generator according to claim 5 has a plurality of rotation buffer members disposed in the housing according to claim 1.

[0011] A motor generator according to a sixth aspect of the present invention has a housing according to the first aspect, in which a plurality of magnetic levitation buffer members are installed.

[0012] In a motor generator according to claim 7, the magnetically levitated rotating member of claim 1 includes a magnetically levitated center-of-gravity position regulating member, and the power-generating rotating portion includes a rotor center-of-gravity position regulating member.

[0013] The electric generator described in claim 8 has a configuration in which the plurality of first levitating magnetic members and the plurality of second levitating magnetic members in claim 1 push and move the magnetically levitated rotating member by either electromagnetic levitation or superconducting magnetic levitation, thereby causing magnetic levitation operation.

[0014] A ninth aspect of the present invention provides a motor generator in which the plurality of first floating magnetic members and the plurality of first orbiting magnetic members in the first aspect are permanent magnets.

[0015] A motor generator according to claim 10 is characterized in that the plurality of second levitating magnetic members and the plurality of second orbiting magnetic members in claim 1 are excitation coils.

[0016] With the above-described structure, the state control member controls the power supply device to supply power to the second levitating magnetic member and the second orbiting magnetic member, thereby controlling the magnetic states of the second levitating magnetic member and the second orbiting magnetic member, and using the repulsive action between the second levitating magnetic member and the first levitating magnetic member to push the magnetically levitated rotating member, keeping it in a magnetically levitated state. At the same time, by controlling the electromagnetic state of the second orbiting magnetic member, it is combined with the first orbiting magnetic member to rotate the magnetically levitated rotating member using a driving method similar to a linear motor.

[0017] When the magnetic levitation rotating member rotates, it drives and rotates the power generating rotating part (the rotor in a motor or generator) and the power generating magnetic member, which generates an induced current in the power generating coil (the stator in a motor or generator) via the power generating magnetic member. The current is then transmitted to the energy storage device and power supply device, allowing the user to use it. [Effects of the Invention]

[0018] The magnetic levitation rotating member and the rotating power generating part (the rotor in a motor or generator) rotate in a vacuum storage space, minimizing air resistance and thereby reducing energy consumption during power generation. In addition, since power generation is performed using the electromagnetic effect, no pollution or noise is generated, and there are no environmental size restrictions during manufacturing, greatly improving overall convenience.

[0019] With the above-mentioned technology, the present invention overcomes the problems of conventional power generation equipment that are prone to pollution and are subject to environmental restrictions during manufacturing, and achieves the above-mentioned advantages, while being a practical inventive step. [Brief explanation of the drawings]

[0020] [Figure 1] FIG. 1 is a perspective view of a first embodiment of the present invention. [Figure 2] FIG. 1 is an exploded view of a first embodiment of the present invention. [Figure 3] FIG. 1 is a block diagram showing a structure of a first embodiment of the present invention. [Figure 4] FIG. 1 is a cross-sectional view of a first embodiment of the present invention. [Figure 5] 1 is a schematic diagram showing a magnetic levitation operation according to a first embodiment of the present invention; [Figure 6] 2 is a schematic diagram 2 showing the magnetic levitation operation of the first embodiment of the present invention. [Figure 7] FIG. 1 is a schematic diagram showing power generation in Example 1 of the present invention. [Figure 8] FIG. 2 is a block diagram showing the operation of the first embodiment of the present invention. [Figure 9] FIG. 10 is a cross-sectional view of a second embodiment of the present invention. [Figure 10] FIG. 10 is a block diagram showing the structure of a second embodiment of the present invention. [Figure 11] FIG. 10 is a cross-sectional view of a third embodiment of the present invention. [Figure 12] FIG. 10 is a cross-sectional view of a fourth embodiment of the present invention. [Figure 13] FIG. 10 is a cross-sectional view of a fifth embodiment of the present invention. [Figure 14] FIG. 10 is a cross-sectional view of a sixth embodiment of the present invention. [Figure 15] FIG. 10 is a cross-sectional view of a seventh embodiment of the present invention. [Figure 16] FIG. 10 is a three-dimensional view of the eighth embodiment of the present invention. [Figure 17] FIG. 10 is a schematic diagram showing the operation of Example 8 of the present invention. [Figure 18] FIG. 10 is a three-dimensional view of Example 9 of the present invention. [Figure 19] FIG. 13 is a cross-sectional view of a tenth embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0021] As shown in Figures 1 to 4, the present invention includes a housing 1, an accommodation space 13, a magnetically levitated rotating member 2, a plurality of first levitating magnetic members 21, a plurality of second levitating magnetic members 14, a plurality of first swivel magnetic members 22, a plurality of second swivel magnetic members 15, a power generating rotating unit 3 (a rotor in the field of a motor or generator), a plurality of power generating magnetic members 31, a plurality of power generating coils 16 (a stator in the field of a motor or generator), an energy storage device 4, a power supply device 5, and a state control member 6.

[0022] The housing 1 includes a container 11 and a cover 12 placed on the container 11. The receiving space 13 is formed in the housing 1, and the receiving space 13 is in a vacuum state. In this embodiment, a high-pressure pump is used to suck out the air in the receiving space 13 to form a vacuum state. The magnetic levitation rotating member 2 is installed in the receiving space 13. In this embodiment, a circular rotating disk with a U-shaped cross section is used as an example. The plurality of first levitating magnetic members 21 are installed on the magnetic levitating rotary member 2. In this embodiment, the first levitating magnetic members 21 are exemplified by permanent magnets that are installed around the lower edge of the magnetic levitating rotary member 2. The plurality of second levitation magnetic members 14 are installed on the housing 1, and are positioned corresponding to the first levitation magnetic members 21. In this embodiment, the second levitation magnetic members 14 are exemplified by excitation coils that control the magnetic state through power. The plurality of first orbiting magnetic members 22 are installed on the magnetic levitation rotary member 2. In this embodiment, the first orbiting magnetic members 22 are exemplified by permanent magnets installed on the side of the magnetic levitation rotary member 2. The plurality of second rotating magnetic members 15 are installed on the housing 1, and are positioned corresponding to the first rotating magnetic members 22. In this embodiment, the second rotating magnetic members 15 are exemplified by coils whose magnetic state is controlled by power. The power generating rotating part 3 (rotor in the field of a motor or a generator) is connected to the magnetic levitation rotating member 2. In this embodiment, the power generating rotating part 3 (rotor in the field of a motor or a generator) is a metal rotor connected to the underside of the magnetic levitation rotating member 2 by a screw, as an example. The plurality of power generating magnetic members 31 are installed on the power generating rotating part 3 (rotor in the field of a motor or a generator). In this embodiment, the power generating magnetic members 31 are exemplified by permanent magnets. The plurality of generating coils 16 (stators in the field of motors and generators) are installed on the housing 1 and disposed on one side of the generating magnetic member 31; The energy storage device 4 is electrically connected to the generating coil 16 (a stator in a motor or generator field), The power supply device 5 is electrically connected to the generating coil 16 (a stator in a motor or generator), the second levitating magnetic member 14, and the second rotating magnetic member 15. In this embodiment, the energy storage device 4 and the power supply device 5 are both exemplified as storage batteries that can store and output electric power. The state control member 6 is connected to the power supply device 5, and the state control member 6 in this embodiment is an electronic controller.

[0023] As can be seen from the above explanation, the system has the advantage of not being subject to environmental restrictions when installed and being a green energy source. [Example]

[0024] Please refer to Figures 1 to 8. As can be seen from these figures, the user first stores sufficient electrical energy in the power supply device 5 and then secures the power generating rotating unit 3 (the rotor in a motor or generator) to the underside of the magnetically levitating rotating member 2 with screws. The magnetically levitating rotating member 2 and the power generating rotating unit 3 (the rotor in a motor or generator) are then placed inside the housing 11, and the cover 12 is then placed over the housing 11 to form a complete housing 1. This allows for convenient installation. After that, the air is removed from the housing space 13 using an air intake device, creating a vacuum inside the housing space 13. The vacuuming technique can be based on existing technology currently available on the market, so a detailed description of this technique will be omitted here.

[0025] To start the device and generate power, the user controls the current supply state of the power supply device 5 using the state control member 6. As shown in FIGS. 4 to 7, current is introduced into the second levitating magnetic member 14 and the second orbiting magnetic member 15, controlling the magnetic states of the second levitating magnetic member 14 and the second orbiting magnetic member 15. At this time, the second levitating magnetic member 14 and the first levitating magnetic member 21 generate repulsion, forming a magnetic levitation structure and causing the magnetic levitating rotating member 2 to levitate. The magnetic state generated by the second orbiting magnetic member 15, in conjunction with the magnetic force of the first orbiting magnetic member 22, generates a linear synchronous motor structure between the second orbiting magnetic member 15 and the first orbiting magnetic member 22, moving the magnetic levitating rotating member 2 and performing rotational motion using a principle similar to that of a linear synchronous motor. This allows the magnetic levitating rotating member 2 to continuously rotate within the housing 1 in a manner similar to that of a magnetic levitation train. In this embodiment, the magnetic levitation operation is performed by an electromagnetic levitation system, but the present invention is not limited to this, and the magnetic levitation operation may be performed by a superconducting magnetic levitation system.

[0026] When the magnetic levitation rotating member 2 rotates, it causes the generator rotating unit 3 (rotor in a motor or generator field) below to rotate in sync, and as the generator rotating unit 3 (rotor in a motor or generator field) rotates, the generator magnetic member 31 on the generator rotating unit 3 (rotor in a motor or generator field) generates an induced current in the generator coil 16 (stator in a motor or generator field) due to an electromagnetic effect, turning the generator rotating unit 3 (rotor in a motor or generator field) into a rotor in a motor or generator field, and turning the generator coil 16 (stator in a motor or generator field) and the housing 1 into a stator in a motor or generator field. As a result, when power is generated in this manner, the induced current generated by the generator coil 16 (stator in a motor or generator field) is introduced into the energy storage device 4 and the power supply device 5 to replenish power, and when a user needs to use it, they can connect directly to the energy storage device 4 and use the power stored in the energy storage device 4. When power generation is to be stopped, the state control member 6 controls the power supply device 5 to cut off the power supplied to the second levitating magnetic member 14 and the second orbiting magnetic member 15. This causes the rotational power and magnetic levitation power to be lost, and the magnetic levitation rotating member 2 and the power generating rotating part 3 (the rotor in a motor or generator) gradually stop rotating. Therefore, the present invention does not violate the law of conservation of energy.

[0027] When the magnetically levitated rotating member 2 and the power-generating rotating unit 3 (the rotor in a motor or generator) rotate, they are in a magnetically levitated state and do not come into contact with any other components during rotation. Furthermore, because they are located within a vacuum-sealed storage space 13, air friction can be reduced to a minimum. This minimizes losses during overall rotation and increases power generation efficiency. Furthermore, the vacuum state prevents the intrusion of foreign matter and dust, reducing clogging due to the accumulation of foreign matter and dust, thereby lowering the likelihood of damage to the entire system. Furthermore, since the system does not emit any fuel or exhaust gases during operation, it is quiet and harmless to humans.

[0028] Furthermore, because the present invention generates power through electromagnetic effects, it does not cause any environmental pollution and naturally achieves the effect of green energy generation. Furthermore, by combining magnetic levitation with electromagnetic effects to generate power, it is not affected by any environmental factors, can be manufactured to any size, and can be installed in any space, improving convenience and eliminating power loss during transportation, significantly improving manufacturing and usage efficiency. Furthermore, because the present invention uses a control method similar to that of a linear motor, the rotation speed and direction of the magnetically levitated rotating member 2 and the power-generating rotating unit 3 (the rotor in a motor or generator) can be controlled by changing the magnetic force. Because there is a close relationship between the current generated by the power-generating coil 16 (the stator in a motor or generator) and the rotation speed of the power-generating magnetic member 31 driven by the power-generating rotating unit 3 (the rotor in a motor or generator), this method naturally allows for accurate control of the rotation speed and adjustment of the required output current as needed. Furthermore, because the present invention operates in a vacuum environment using a magnetic levitation method, it achieves frictionless power generation. Furthermore, since the amount of power output can be changed by adjusting the rotation speed, it is possible to generate a high-power output effect by driving with low-power electricity, and the output value can be adjusted to 10 million times the input value as needed, achieving the effect of a so-called motor-generator. However, since the present invention only achieves an effect similar to an amplifier using the above-mentioned method, it does not violate the law of conservation of energy. [Example]

[0029] As shown in Figures 9 and 10, the magnetic levitation rotating member 2 and the power generating rotating part 3 (rotor in the motor or generator field) are molded as a single unit, which increases the stability of the connection between the magnetic levitation rotating member 2 and the power generating rotating part 3 (rotor in the motor or generator field).The magnetic levitation rotating member 2 (see Figure 9) is a perfectly circular plate-like body, but the shapes of the magnetic levitation rotating member 2 and the power generating rotating part 3 (rotor in the motor or generator field) are not limited to this.

[0030] In this embodiment, the power supply device 5 and the housing 1 are information-connected to a status monitoring device 7, and the status monitoring device 7 and the status control member 6 are information-connected to an alert device 8. In this embodiment, the alert device 8 is exemplified by alert software that can be connected to relevant departments. This monitors and controls the status of the current supplied by the power supply device 5 and the operating status in the housing 1 via the status monitoring device 7. In this embodiment, the status monitoring device 7 is exemplified by a combination of a current sensor and a camera. This allows the current status of the power supply device 5 to be detected via the current sensor, and the operating status of the housing 1 to be observed via the camera.

[0031] If an abnormal situation is detected (for example, the power supply device 5 stops supplying current or the operation inside the housing 1 stops), the alert device 8 will notify the relevant department to conduct checks and maintenance, or the user to observe it themselves. If an abnormal situation is discovered, the alert device 8 can also be directly controlled via the status control member 6 to perform an alert operation. This can improve the safety of use and the efficiency of equipment maintenance. [Example]

[0032] 11, the magnetic levitation rotating member 2 is installed below the power-generating rotating part 3 (the rotor in a motor or generator), and the first levitation magnetic member 21 and the second levitation magnetic member 14 are both installed below the magnetic levitation rotating member 2, and the magnetic levitation effect is generated by pushing it from below up. The positional relationship between the magnetic levitation rotating member 2 and the power-generating rotating part 3 (the rotor in a motor or generator) is not limited to this. [Example]

[0033] As shown in Figure 12, multiple rotational buffers 17 are installed within housing 1, positioned above and below both the magnetic levitation rotating member 2 and the power-generating rotating unit 3 (the rotor in a motor or generator). In this embodiment, rotational buffers 17 are rotatable bearing roller structures, preventing the magnetic levitation rotating member 2 and the power-generating rotating unit 3 (the rotor in a motor or generator) from colliding with housing 1 in the event of an emergency (such as an earthquake or vibrations when installed on a means of transportation). Furthermore, because rotational buffers 17 themselves have a rotation effect, even if they collide with rotational buffers 17, they can rotate smoothly via rotatable rotational buffers 17, preventing unnecessary friction. This prevents collision with housing 1 (i.e., the stator of a generator), improving safety during use and extending the service life of the equipment. [Example]

[0034] As shown in Figure 13, multiple magnetic levitation buffers 18 are installed within housing 1 and arranged around magnetic levitation rotating member 2 and power-generating rotating unit 3 (the rotor in a motor or generator). In this embodiment, magnetic levitation buffers 18 are rotatable bearing roller structures, which prevent magnetic levitation rotating member 2 and power-generating rotating unit 3 (the rotor in a motor or generator) from colliding with housing 1 in the event of an emergency (such as an earthquake or vibrations when installed on a means of transportation). Furthermore, because magnetic levitation buffers 18 themselves have a rotation effect, even if an object collides with magnetic levitation buffers 18, it can rotate smoothly via rotatable magnetic levitation buffers 18, without generating unnecessary friction. This prevents collision with housing 1 (i.e., the stator part of a generator), improving safety in use and extending the service life of the equipment. [Example]

[0035] 14, a magnetic levitation center-of-gravity position regulating member 23 is installed on the magnetic levitation rotating member 2, and a rotor center-of-gravity position regulating member 32 is installed on the power-generating rotating part 3 (the rotor in the field of a motor or generator). In this embodiment, the magnetic levitation center-of-gravity position regulating member 23 and the rotor center-of-gravity position regulating member 32 are both cusps that protrude outward.

[0036] Furthermore, since the magnetic levitation center of gravity position regulating member 23 and the rotor center of gravity position regulating member 32 are both installed at the central axis of rotation, the center of gravity can be stabilized during rotation through the magnetic levitation center of gravity position regulating member 23 and the rotor center of gravity position regulating member 32. Furthermore, even if a collision occurs, the magnetic levitation center of gravity position regulating member 23 and the rotor center of gravity position regulating member 32 will provide a position regulating effect, reducing the probability of damage. [Example]

[0037] As shown in Figure 15, a plurality of rotary buffer members 17 and a plurality of magnetically levitated buffer members 18 are provided on housing 1 at the same time, and a magnetically levitated center-of-gravity position regulating member 23 is provided on magnetically levitated rotating member 2, and a rotor center-of-gravity position regulating member 32 is provided on power-generating rotating part 3 (rotor in the field of motors and generators). This means that rotary buffer members 17, magnetically levitated buffer members 18, magnetically levitated center-of-gravity position regulating members 23, and rotor center-of-gravity position regulating member 32 can exist simultaneously, thereby achieving a multiplexed protection effect. [Example]

[0038] As shown in Figures 16 and 17, a horizontal measuring member 9 is installed on the outside of the housing 1. In this embodiment, the horizontal measuring member 9 is pivotally attached to a plurality of circular rings 91 on the outside of the housing 1. Since the circular rings 91 themselves have weight, they form a seesaw-like shape, causing each circular ring 91 to be in a horizontal position.

[0039] Therefore, when the housing 1 itself is in a horizontal state, as shown in Fig. 16, each of the circular rings 91 is parallel to the upper surface of the housing 1. When the housing 1 is tilted, as shown in Fig. 17, the circular rings 91 remain horizontal due to their own weight, so each of the circular rings 91 is not parallel to the upper surface of the housing 1. This allows the user to know the horizontal state of the housing 1 at any time, and when adjustment is necessary (for example, immediately after moving the housing 1), adjustment can be made based on the horizontal measurement member 9. [Example]

[0040] As shown in FIG. 18, the horizontal measuring member 9 in this embodiment is an example of a spirit level on the upper surface of the housing 1, but the type of the horizontal measuring member 9 is not limited to this. [Example]

[0041] As shown in Figure 19, the housing 1 is miniaturized, and the magnetically levitating rotating member 2 and the power-generating rotating unit 3 (rotor in the motor or generator field) are in the form of a turntable molded as a single unit, the power-generating rotating unit 3 (rotor in the motor or generator field) is defined in the central area of the magnetically levitating rotating member 2, the power-generating magnetic member 31 is similarly installed at the power-generating rotating unit 3 (rotor in the motor or generator field), the magnetically levitating rotating member 2 is similarly placed in a magnetically levitated state by combining the first levitating magnetic member 21 with the second levitating magnetic member 14, the magnetically levitating rotating member 2 and the power-generating rotating unit 3 (rotor in the motor or generator field) are moved by combining the first swiveling magnetic member 22 with the second swiveling magnetic member 15, and the power-generating magnetic member 31 can be combined with the power-generating coil 16 (stator in the motor or generator field) to generate electricity.

[0042] The above-described structure allows the present invention to be miniaturized without limiting the structural aspects thereof, and allows the present invention to be installed in various places and machines, such as apartment buildings and various means of transportation, thereby improving the practicality of the present invention. [Explanation of symbols]

[0043] 1. Housing 11 Containment Unit 12 Lid 13 Containment Space 14 Second floating magnetic member 15 Second rotating magnetic member 16 Generator coil 17 Rotating buffer member 18 Magnetic levitation buffer material 2. Magnetically levitated rotating member 21 First floating magnetic member 22 First rotating magnetic member 23 Magnetic levitation center of gravity position control member 3 Power generating rotating section 31 Power generation magnetic components 32 Rotor center of gravity position control member 4. Energy storage devices 5 Power supply device 6. State control member 7 Condition Monitoring Device 8. Alert Device 9 Horizontal measuring member 91 Circular Ring

Claims

1. A motor generator, mainly comprising: Housing and an accommodation space formed within the housing and having a vacuum state therein; a magnetically levitated rotating member installed in the accommodation space; a plurality of first levitating magnetic members disposed on the magnetic levitating rotating member; a plurality of second levitating magnetic members that are installed on the housing and disposed at positions corresponding to the plurality of first levitating magnetic members, and that push and move the magnetically levitated rotating member by a magnetic levitation effect to bring it into a magnetically levitated state; a plurality of first orbiting magnetic members disposed on the magnetic levitation rotating member; a plurality of second orbiting magnetic members installed on the housing and disposed at positions corresponding to the plurality of first orbiting magnetic members, and driving the magnetic levitation rotary member to rotate by a magnetic force; a power generating rotating unit connected to the magnetic levitation rotating member and disposed within the accommodation space; a plurality of power-generating magnetic members disposed on the power-generating rotating unit; a plurality of generating coils disposed on the housing and positioned on one side of the plurality of generating magnetic members, the generating coils being combined with the plurality of generating magnetic members to generate induced current; an energy storage device electrically connected to the generating coil; a power supply device electrically connected to the power generating coil, the plurality of second levitating magnetic members, and the plurality of second rotating magnetic members, receiving current supplied by the power generating coil and supplying current to the plurality of second levitating magnetic members and the plurality of second rotating magnetic members; a state control member connected to the power supply device and controlling the current supplied to the second floating magnetic members and the second orbiting magnetic members; A motor generator comprising:

2. 2. The motor generator according to claim 1, wherein the power supply device and the housing are information-connected to a condition monitoring device.

3. 3. The motor generator according to claim 2, wherein the state monitoring device and the state control member are information-connected to an alert device.

4. 2. The motor generator according to claim 1, wherein the magnetically levitated rotating member and the power-generating rotating part rotate in a vacuum environment formed in the accommodation space.

5. 2. The motor-generator according to claim 1, wherein a plurality of rotation buffer members are installed in the housing.

6. 2. The motor generator according to claim 1, wherein a plurality of magnetically levitated buffer members are installed in the housing.

7. 2. The motor generator according to claim 1, wherein the magnetically levitated rotating member includes a magnetically levitated center-of-gravity position regulating member, and the power-generating rotating part includes a rotor center-of-gravity position regulating member.

8. 2. The motor-generator of claim 1, wherein the plurality of first levitating magnetic members and the plurality of second levitating magnetic members push and move the magnetically levitated rotating member by either electromagnetic levitation or superconducting magnetic levitation.

9. 2. The motor-generator according to claim 1, wherein the plurality of first levitating magnetic members and the plurality of first orbiting magnetic members are permanent magnets.

10. 2. The motor generator according to claim 1, wherein the plurality of second levitating magnetic members and the plurality of second rotating magnetic members are excitation coils.

Citation Information

Patent Citations

  • Permanent magnetism levitation energy-storing flywheel system

    CN101409478A

  • Full-effect magnetic-suspension brushless variable frequency power generator

    CN104079144A

  • Vertical type magnetic suspension flywheel energy storage system

    CN105591492A

  • Flywheel systems and flywheel bearing modules

    CN111226378A

  • Energy amplified multilayer power generation system with automatic continuously floating thrust structure using magnetic force

    JP1997303250A