Method and device for driving target object to move by gravitational field generated by variable electromagnetic field
By adjusting the frequency, amplitude and phase of the time-varying electromagnetic field and simulating the force of the gravitational field, the problem that traditional electromagnetic technology is difficult to drive non-magnetic and non-conductive substances is solved, and precise control of various substances and high-precision motion regulation is achieved.
Patent Information
- Application Number
- CN202510096105.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2025-05-06
AI Technical Summary
Traditional electromagnetic technology is difficult to simulate gravitational fields and drive the movement of various objects, especially non-magnetic and non-conductive substances.
The variable electromagnetic field generation device generates a time-varying electromagnetic field, adjusts the frequency, amplitude and phase of the electromagnetic field to simulate the force of the gravitational field and drives the movement of the target object.
It realizes precise control of all substances, including non-magnetic and non-conductive substances, breaks through the limitation that traditional electromagnetic technology can only drive magnetic substances, and has high precision and wide application potential.
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Figure CN119943525A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of physics technology, and in particular to a method and device for generating a gravitational field by changing an electromagnetic field to drive a target object to move. Background Art
[0002] At present, most traditional material driving devices rely on common mechanical principles such as direct mechanical force and electromagnetic force. For example, the electric motor drives the rotor to perform mechanical movement by acting on the rotor through the magnetic field generated by the current, and the electromagnetic suspension technology uses the interaction of magnetic fields to achieve the suspension or drive of objects. However, the limitations of these technologies are that they can only target specific materials or types of substances, and they mostly rely on traditional sources of electricity or gravity. Under the current scientific framework, there are essential differences between magnetic fields and gravitational fields, and the influence of electromagnetic forces on matter is usually unrelated to gravity. Therefore, it is difficult to use traditional electromagnetic technology to simulate gravitational fields and drive the movement of various objects. Summary of the invention
[0003] In view of this, the purpose of the present invention is to propose a method and device for generating a gravitational field by changing an electromagnetic field to drive the movement of a target object, aiming to utilize the changing characteristics of the electromagnetic field to simulate a force similar to a gravitational field, and generate an effect similar to a gravitational field through a changing electromagnetic field, thereby driving all objects including non-magnetic materials and non-conductive materials to move, and realizing precise control of the movement of materials, breaking through the limitation that traditional electromagnetic mechanics can only drive metal materials, and not relying on traditional electromagnetic force or mechanical driving force, by adjusting the changes in the electromagnetic field to generate an effect similar to gravity, thereby driving the movement of all materials including non-magnetic materials and non-conductive materials.
[0004] To achieve the above object, the present invention provides the following technical solutions:
[0005] Based on the above objectives, in a first aspect, the present invention provides a method for generating a gravitational field by changing an electromagnetic field to drive a target object to move, comprising the following steps:
[0006] Generate a time-varying electromagnetic field in the space where the target is located by means of a variable electromagnetic field generating device;
[0007] Adjust the frequency, amplitude and phase of the time-varying electromagnetic field to produce the effect of a changing magnetic field in space;
[0008] Based on the time-varying electromagnetic field, a force is generated on the target object, driving the target object to move along a predetermined trajectory or direction.
[0009] As a further solution of the present invention, the variable electromagnetic field generating device includes a high-voltage DC power supply, a frequency converter and an electromagnetic coil. The power supply provides adjustable current to the electromagnetic coil, and the frequency converter is used to adjust the frequency and waveform of the current to generate a variable electromagnetic field.
[0010] As a further solution of the present invention, the time-varying electromagnetic field is an electromagnetic field generated by varying pulsed direct current.
[0011] As a further solution of the present invention, the target object is any material including magnetic material, non-magnetic material or non-conductive material.
[0012] As a further solution of the present invention, based on the time-varying electromagnetic field generating a force on the target object, when driving the target object to move along a predetermined trajectory or direction, the frequency, amplitude and phase parameters of the electromagnetic field are controlled to adjust the force of the electromagnetic field on the target object; so that the change in the electromagnetic field produces an effect similar to a gravitational field, which affects the position of the target object in space and drives the material to move along a predetermined trajectory.
[0013] As a further solution of the present invention, the method of generating a gravitational field by changing the electromagnetic field to drive the target object to move also includes: monitoring the motion state of the target object in real time through a feedback system, and adjusting and controlling the changing characteristics of the electromagnetic field according to the feedback.
[0014] As a further solution of the present invention, the feedback system includes a position sensor, a velocity sensor and an acceleration sensor, which are used to monitor the motion state of the position, velocity and acceleration of the target object in real time.
[0015] In a second aspect, the present invention further provides a device for generating a gravitational field effect by changing an electromagnetic field to drive a target object to move, comprising:
[0016] A variable electromagnetic field generating device, used for generating a time-varying electromagnetic field, the variable electromagnetic field generating device comprising a high-voltage direct current power supply, a frequency converter and an electromagnetic coil;
[0017] A control unit, used to adjust the working state of the variable electromagnetic field generating device and control the frequency, amplitude and phase of the electromagnetic field;
[0018] A material support platform, used to support and position the target object, and the platform can adjust the relative position of the target object;
[0019] The feedback system is used to monitor the motion state of the target object in real time and adjust the parameters of the electromagnetic field according to the monitoring data.
[0020] As a further solution of the present invention, the feedback system includes a position sensor, a velocity sensor and an acceleration sensor for monitoring the motion state of the target object.
[0021] As a further solution of the present invention, the variable electromagnetic field generating device is capable of generating variable pulse direct current.
[0022] As a further solution of the present invention, the control unit adjusts the electromagnetic field parameters through a real-time data processing algorithm to ensure that the target object moves according to a predetermined trajectory.
[0023] As a further solution of the present invention, the material support platform can be configured into different support forms to adapt to the movement requirements of different types of materials.
[0024] As a further solution of the present invention, the variable electromagnetic field generating device comprises:
[0025] A vacuum tank, in which a small ball is suspended by a thin cotton thread. The ball is made of any material and can rotate in a vacuum environment;
[0026] Two coils are arranged on the upper and lower sides of the vacuum tank, wherein the upper coil is connected to a high-voltage DC pulse power supply and the lower coil is grounded;
[0027] The coils are wound with silicone wires, and the wires of each coil are copper wires. The wires between the coils are disconnected and arranged staggered in space.
[0028] As a further solution of the present invention, the diameter of the silicone wire of the coil is 10 mm, the diameter of the central copper wire of the silicone wire is 1.5 mm, and the breakpoint between the two coils is not insulated, forming an open breakpoint.
[0029] As a further solution of the present invention, the diameter of the vacuum tank is 10 cm, and the coil above is connected to the output end of a high-voltage DC generator, with a voltage range of about 50,000 volts and a current of one hundred thousandth of an ampere.
[0030] As a further solution of the present invention, the small ball is suspended by a thin cotton thread, and the thin cotton thread is fixed at one end in the vacuum tank for free rotation under the action of the electromagnetic field.
[0031] As a further solution of the present invention, the high voltage DC generator is a 2GF-200KV / 5mA model, which can adjust the output voltage and current to control the rotation speed of the ball.
[0032] As a further solution of the present invention, the internal pressure of the vacuum tank is adjusted to a near-vacuum state to avoid interference with the movement of matter caused by the electrostatic motor effect and the ion wind effect. The variable electromagnetic field generating device can produce a gravity-like effect in a vacuum environment, driving all materials, including small balls of non-magnetic materials (such as polyethylene, plastic, etc.) to rotate or move. The time-varying electromagnetic field generated by the high-voltage DC power supply can accurately control the rotation trajectory and speed of the small balls, and is suitable for micro-robots, precision instruments and material manipulation fields.
[0033] The present invention provides a method and device for simulating the gravitational field effect and driving the movement of matter by changing the electromagnetic field. By precisely controlling the change of the electromagnetic field, various types of matter, especially non-magnetic matter and non-conductive matter, can be driven, overcoming the limitations of existing electromagnetic force applications. The present invention has broad application potential in many fields, including micro-nano technology, medical treatment, aerospace, industrial automation, etc., and provides a new type of material manipulation technology.
[0034] Compared with the prior art, the method and device for generating a gravitational field by changing an electromagnetic field to drive a target object to move has the following beneficial effects:
[0035] 1. Since traditional electromagnetic fields mainly act on materials with magnetic or conductive properties, the present invention breaks through the limitations of traditional electromagnetic force and can produce a gravitational effect by adjusting the time-varying characteristics of the electromagnetic field, overcoming the limitation that electromagnetics can only drive magnetic and conductive materials, and enables non-magnetic and non-conductive materials to move under the action of electromagnetic fields. This innovation broadens the application scope of electromagnetic force driving technology.
[0036] 2. The electromagnetic device of the present invention can produce a gravitational effect, and can drive all materials, not only magnetic materials, but also non-magnetic materials, non-conductive materials, and even liquids, gases and other materials, and can also operate the inside of materials. This feature makes the technology have potential application value in many fields where traditional electromagnetic technology cannot be applied, such as micro-nano technology, precise manipulation of non-magnetic materials, and certain biomedical fields.
[0037] 3. The present invention can achieve high-precision control of material movement by accurately adjusting the frequency, amplitude, phase and other parameters of the electromagnetic field. The real-time feedback of the control system and the dynamic adjustment of the electromagnetic field parameters enable the movement state of the material to be accurately adjusted to achieve the required speed, trajectory and direction. The high-precision control characteristics of this technology provide more reliable solutions for the fields of industrial automation, material handling, micro-robotics, etc.
[0038] 4. The present invention is a time-varying electromagnetic field device that can generate or simulate gravitational effects by adjusting its characteristics, and has a higher energy conversion efficiency when driving matter. Compared with the traditional electromagnetic drive method, the present invention can achieve a stronger material driving effect at a lower power consumption, has a higher energy utilization rate, and is easier to control by people, especially by computer programs. The technology of the present invention can be applied to many fields, including but not limited to:
[0039] Micro-nano technology: In the manipulation of micro-objects or nano-level materials, it can achieve extremely precise material positioning and driving, providing new ideas for the development of micro-robots, sensors and other micro-nano devices.
[0040] Biomedical field: It can precisely manipulate drugs, particles and other substances in the body, promoting the advancement of technologies such as targeted drug delivery and minimally invasive surgery.
[0041] Aerospace: Through precise material driving technology, accurate positioning and regulation of materials in spacecraft or equipment can be achieved, which has huge application value in aerospace exploration and research.
[0042] Industrial Automation: The present invention can be used for non-contact object handling, material transportation and precise control of automated production lines to improve production efficiency and reliability.
[0043] The present invention allows the real-time adjustment of the electromagnetic field to achieve the motion control requirements of different materials and different environments, and has a high degree of flexibility. Whether it is for materials of different shapes or the needs of different working environments, the controllability and accuracy of the material movement can be ensured by adjusting the parameters of the electromagnetic field.
[0044] 5. The present invention realizes the driving of materials through electromagnetic fields, and there is no need for direct contact between materials, thus avoiding the problems of wear and heat loss caused by friction in traditional mechanical drives. Through contactless driving, friction and loss are reduced, which not only improves the efficiency of the system, but also extends the service life of the equipment.
[0045] In summary, the present invention generates or simulates the gravitational effect through the time-varying characteristics of the electromagnetic field, breaking through the limitations of traditional electromagnetic force driving technology, and can not only drive various types of substances, but also achieve high-precision and flexible material motion control. This technology has great application potential and can be widely used in many fields such as micro-nano technology, biomedicine, aerospace, industrial automation, etc., with significant technical advantages and economic value.
[0046] These and other aspects of the present application will be more concise and understandable in the following description of the embodiments. It should be understood that the above general description and the following detailed description are only exemplary and explanatory and cannot limit the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0047] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or related technologies, the following briefly introduces the drawings required for use in the exemplary embodiments or related technical descriptions. The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention. In the drawings:
[0048] Figure 1 The present invention is a flowchart of a method for generating a gravitational field by changing an electromagnetic field to drive a target object to move.
[0049] Figure 2 The present invention is a schematic structural diagram of a variable electromagnetic field generating device in a method and device for generating a gravitational field by a variable electromagnetic field to drive a target object to move according to an embodiment of the present invention.
[0050] Figure 3 This is a structural schematic diagram of a method and device for generating a gravitational field by a changing electromagnetic field to drive a target object to move according to an embodiment of the present invention, in which the wires between coils are disconnected and arranged staggered in space. DETAILED DESCRIPTION
[0051] Below, the present application is further described in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form a new embodiment.
[0052] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the embodiments of the present invention are further described in detail below in combination with specific embodiments and with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.
[0053] It should be noted that all expressions using "first" and "second" in the embodiments of the present invention are intended to distinguish two non-identical entities or non-identical parameters with the same name. It can be seen that "first" and "second" are only for the convenience of expression and should not be understood as limitations on the embodiments of the present invention. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions, for example, other steps or units inherent to a process, method, system, product or device that includes a series of steps or units.
[0054] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0055] The flowcharts shown in the accompanying drawings are only examples and do not necessarily include all the contents and operations / steps, nor must they be executed in the order described. For example, some operations / steps may also be decomposed, combined or partially merged, so the actual execution order may change according to actual conditions.
[0056] In conjunction with the accompanying drawings, some embodiments of the present application are described in detail below. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other.
[0057] Since most traditional material driving devices rely on common mechanical principles such as direct mechanical force and electromagnetic force, under the current scientific framework, there are essential differences between magnetic fields and gravitational fields, and the influence of electromagnetic force on matter is usually unrelated to gravity. Therefore, it is difficult to use traditional electromagnetic technology to simulate gravitational fields and drive the movement of various objects. In view of this, the present invention proposes a method and device for driving the movement of a target object by generating a gravitational field by changing the electromagnetic field, aiming to use the changing characteristics of the electromagnetic field to simulate a force similar to a gravitational field, and generate a gravitational field-like effect through a changing electromagnetic field, thereby driving all objects including non-magnetic materials and non-conductive materials to move, and realizing precise control of the movement of materials, breaking through the limitation that traditional electromagnetic mechanics can only drive metal materials, and not relying on traditional electromagnetic force or mechanical driving force, by adjusting the change of the electromagnetic field to produce a gravitational effect, thereby driving the movement of all materials including non-magnetic materials and non-conductive materials.
[0058] See also Figure 1 As shown, an embodiment of the present invention provides a method for generating a gravitational field by changing an electromagnetic field to drive a target object to move, the method comprising the following steps:
[0059] Step S10: Generate a time-varying electromagnetic field in the space where the target is located by using a variable electromagnetic field generating device.
[0060] In this step, the variable electromagnetic field generating device includes a high-voltage DC power supply, a frequency converter and an electromagnetic coil. The power supply provides an adjustable current to the electromagnetic coil, and the frequency converter is used to adjust the frequency and waveform of the current to generate a variable electromagnetic field.
[0061] In this embodiment, the variable electromagnetic field generating device generates a variable electromagnetic field by working together with a high-voltage DC power supply, a frequency converter and an electromagnetic coil. The specific process is as follows:
[0062] (1) High voltage DC power supply: Provides current and generates the basic electromagnetic field through the electromagnetic coil. The current value of the DC power supply can be adjusted, allowing the strength of the electromagnetic field to change at any time.
[0063] (2) Frequency converter: It generates a time-varying electromagnetic field by adjusting the frequency and waveform of the current (such as sine wave, square wave, pulse wave, etc.). Frequency adjustment causes the electromagnetic field to change periodically, thus generating a dynamic magnetic field effect.
[0064] (3) Electromagnetic coil: The coil generates a time-varying electromagnetic field through the current provided by a high-voltage DC power supply. The frequency and waveform of the current affect the way the magnetic field changes (e.g., frequency, amplitude, phase, etc.).
[0065] Among them, the time-varying electromagnetic field type: the time-varying electromagnetic field can be an alternating current electromagnetic field (AC), that is, the direction and intensity of the current change periodically; a pulsed electromagnetic field, where the current switches on and off quickly; or an adjustable electromagnetic field, where the current changes with time, and different forms of electromagnetic fields can be generated as needed.
[0066] Step S20: adjusting the frequency, amplitude and phase of the time-varying electromagnetic field to produce an effect of a varying magnetic field in space.
[0067] In this step, the magnetic field effect is further optimized by controlling the parameters of the time-varying electromagnetic field, thereby generating a specific force on the target object. This step includes:
[0068] 1. Adjust the frequency: By adjusting the frequency of the current, the period of magnetic field change is changed. A high-frequency electromagnetic field will produce a rapidly changing magnetic field, while a low frequency will produce a slower magnetic field change. This adjustment helps to accurately control the trajectory and speed of the target object.
[0069] 2. Adjustment amplitude: By changing the amplitude of the current (i.e. the strength of the current), the strength of the magnetic field can be adjusted, thereby affecting the magnitude of the force. A stronger magnetic field produces a greater driving force, which is suitable for scenarios that require stronger thrust; a weaker magnetic field produces a smaller thrust, which is suitable for precision control.
[0070] 3. Adjusting the phase: By changing the phase of the electromagnetic field, directional control of different target objects can be achieved. By controlling the phase, the force of the magnetic field can be directed or adjusted to more accurately guide the material to move in a specific direction or trajectory.
[0071] Step S30: generating a force on a target object based on the time-varying electromagnetic field, driving the target object to move along a predetermined trajectory or direction.
[0072] In this step, the target object is any material including magnetic material, non-magnetic material or non-conductive material. Among them, for magnetic materials, the change of the time-varying electromagnetic field will stimulate the material interaction force in the magnetic field and drive the material to move. For example, objects made of permanent magnets or soft magnetic materials will generate a strong driving force in a changing magnetic field. For non-magnetic materials (such as plastic, glass, wood, etc.), the change of the time-varying electromagnetic field can still exert a force on the object, and this effect comes from the change effect of the electromagnetic field. Especially under the action of the rapid change of pulsed direct current, non-magnetic materials can also be driven by force to achieve directional movement.
[0073] For non-conductive materials (such as ceramics, rubber, etc.), although these materials themselves are not conductive and do not have magnetism, they can still be affected by the force in the changing electromagnetic field. For example, by using the principle of electromagnetic induction, or by setting up an electric field with a polarization effect and a magnetic field, non-conductive materials can feel the driving effect of the electromagnetic field.
[0074] In this embodiment, based on the time-varying electromagnetic field generating a force on the target object, when the target object is driven to move along a predetermined trajectory or direction, the frequency, amplitude and phase parameters of the electromagnetic field are controlled to adjust the force of the electromagnetic field on the target object; so that the change in the electromagnetic field produces an effect similar to a gravitational field, which affects the position of the target object in space and drives the material to move along a predetermined trajectory.
[0075] The method of using a changing electromagnetic field to generate a gravitational field to drive the movement of a target object of the present invention drives the movement of the target object by using a changing electromagnetic field (time-varying electromagnetic field), simulating the gravitational field effect in principle, so that the target object (whether it is a magnetic, non-magnetic or non-conductive material) moves along a predetermined trajectory or direction in space.
[0076] This method has broad application potential, especially in the manipulation of tiny objects, precision instrument control, contactless actuation, and material control in special environments.
[0077] In some embodiments, the method of generating a gravitational field by changing an electromagnetic field to drive the target object to move further includes: monitoring the motion state of the target object in real time through a feedback system, and adjusting and controlling the changing characteristics of the electromagnetic field according to the feedback.
[0078] In this embodiment, the feedback system can monitor the motion state (position, speed, acceleration, etc.) of the target object in real time, and automatically adjust the changing characteristics of the electromagnetic field according to the monitored data to achieve more precise motion control. The feedback control system ensures that the target object moves along a predetermined trajectory or direction, and can effectively respond to environmental changes or fluctuations in the state of matter, and has a wide range of application potentials, especially in the fields of precision control and micro-nano manipulation.
[0079] The feedback system includes a position sensor, a velocity sensor and an acceleration sensor, which are used to monitor the position, velocity and acceleration of the target object in real time. The specific process is as follows:
[0080] Position sensor: detects the position change of the target object in real time. Through the position data, the system can accurately understand whether the target object is on the predetermined trajectory and calculate the required adjustment amount.
[0081] Speed sensor: detects the instantaneous speed of the target object and determines whether its motion state meets expectations. If the speed of the target object exceeds the predetermined range, the system can adjust the intensity or frequency of the electromagnetic field in time to prevent the object from moving too fast or too slow.
[0082] Accelerometer: Detects the acceleration of the target object to further optimize the smoothness and stability of the movement. If the acceleration of the target object is too large or too small, the feedback system can adjust the changing characteristics of the electromagnetic field to avoid violent fluctuations or jitters during the movement of the object.
[0083] In this embodiment, the feedback system automatically adjusts the changing characteristics of the electromagnetic field according to the real-time monitoring data. The specific adjustment methods include:
[0084] Adjust the frequency of the electromagnetic field: According to the motion state of the target object, change the frequency of the electromagnetic field so that the motion of the target object conforms to the expected trajectory. For example, if the object moves too fast, reduce the frequency of the electromagnetic field; if the object is not moving fast enough, increase the frequency of the electromagnetic field.
[0085] Adjust the electromagnetic field amplitude: Adjust the electromagnetic field strength according to the acceleration or speed of the target object. If more thrust is needed, the electromagnetic field amplitude can be increased; conversely, the electromagnetic field amplitude can be reduced to precisely control the speed of the material.
[0086] Adjust the phase of the electromagnetic field: According to the real-time position and direction of movement of the target object, the phase of the electromagnetic field is adjusted so that the force always points in the correct direction, thereby precisely controlling the movement of the material.
[0087] This method drives the target object to move through a time-varying electromagnetic field, and combined with a feedback control system, it can monitor and adjust the object's motion state in real time. By precisely controlling the frequency, amplitude and phase of the electromagnetic field, a directional force is generated to drive the target object to move along a specific trajectory or direction.
[0088] Among them, the position, velocity and acceleration sensors monitor the state of the target object in real time, and adjust the characteristics of the electromagnetic field according to the monitoring data to ensure that the target object moves accurately along the predetermined trajectory and avoid error accumulation and deviation from the trajectory. Since it can manipulate a variety of types of materials, including magnetic, non-magnetic, and non-conductive materials, this method is suitable for various precision control tasks, such as micro-nano object manipulation, intelligent robot control, unmanned driving systems, and spacecraft trajectory control.
[0089] The method of the present invention adds a real-time feedback control system based on the traditional time-varying electromagnetic field control technology, and realizes dynamic adjustment of the motion of the target object through feedback from position, velocity and acceleration sensors. This method can not only accurately control the motion trajectory of the target object, but also operate stably in an uncertain environment. It is widely applicable to the fields of micro-nano material control, robotics, spacecraft control, etc., and has great application potential.
[0090] It should be noted that the above figures are only schematic illustrations of the processes included in the method according to an exemplary embodiment of the present invention, and are not intended to be limiting. It is easy to understand that the processes shown in the above figures do not indicate or limit the time sequence of these processes. In addition, it is also easy to understand that these processes can be performed synchronously or asynchronously, for example, in multiple modules.
[0091] It should be understood that, although described in a certain order, these steps are not necessarily performed in sequence in the above order. Unless there is a clear explanation in this article, the execution of these steps does not have a strict order restriction, and these steps can be performed in other orders. Moreover, a part of the steps of the present embodiment may include a plurality of steps or a plurality of stages, and these steps or stages are not necessarily performed at the same time, but can be performed at different times, and the execution order of these steps or stages is not necessarily performed in sequence, but can be performed in turn or alternately with at least a part of the steps or stages in other steps or other steps.
[0092] In a second aspect of the embodiments of the present invention, the present invention further provides a device for generating a gravitational field effect by changing an electromagnetic field to drive a target object to move, comprising:
[0093] A variable electromagnetic field generating device, used for generating a time-varying electromagnetic field, the variable electromagnetic field generating device comprising a high-voltage direct current power supply, a frequency converter and an electromagnetic coil;
[0094] A control unit, used to adjust the working state of the variable electromagnetic field generating device and control the frequency, amplitude and phase of the electromagnetic field;
[0095] A material support platform, used to support and position the target object, and the platform can adjust the relative position of the target object;
[0096] The feedback system is used to monitor the motion state of the target object in real time and adjust the parameters of the electromagnetic field according to the monitoring data.
[0097] The feedback system includes a position sensor, a velocity sensor and an acceleration sensor for monitoring the motion state of the target object. The variable electromagnetic field generating device can generate variable pulse direct current. The control unit adjusts the electromagnetic field parameters through a real-time data processing algorithm to ensure that the target object moves along a predetermined trajectory. The material support platform can be configured into different support forms to meet the movement requirements of different types of materials.
[0098] The present invention breaks through the limitations of traditional electromagnetic force and can produce an effect similar to gravity by adjusting the time-varying characteristics of the electromagnetic field, overcoming the limitation that electromagnetism can only drive magnetic and conductive materials, so that non-magnetic and non-conductive materials can also move under the action of the electromagnetic field.
[0099] This innovation broadens the application scope of electromagnetic force driving technology. The electromagnetic device of the present invention can produce a gravitational effect and can drive all materials. It is not only applicable to magnetic materials, but also can drive the movement of non-magnetic materials, non-conductive materials and even liquids, gases and other materials, and can also operate the inside of materials. This feature makes the technology have potential application value in many fields where traditional electromagnetic technology cannot be applied, such as micro-nano technology, precise manipulation of non-magnetic materials and certain biomedical fields.
[0100] In this embodiment, see Figure 2 and Figure 3 As shown, the variable electromagnetic field generating device comprises:
[0101] A vacuum tank 4, in which a small ball 5 (target object) is suspended by a thin cotton thread, and the small ball 5 is made of non-magnetic material and can rotate in a vacuum environment;
[0102] Two coils are arranged on the upper and lower sides of the vacuum tank 4, wherein the upper coil 2 is connected to the high-voltage DC pulse power supply 1, and the lower coil 6 is grounded and connected to the ground wire 7;
[0103] See also Figure 2 and Figure 3 As shown, the coil is wound with silicone wire, and the wire of each coil is copper wire. The wires between the coils are disconnected and staggered in space.
[0104] The diameter of the silicone wire of the coil is 10 mm, the diameter of the central copper wire of the silicone wire is 1.5 mm, and the breakpoint between the two coils is not insulated, forming an open breakpoint. The diameter of the vacuum tank 4 is 10 cm, and the upper coil is connected to the output end of the high-voltage DC generator 1, with a voltage range of 50,000 volts and a current of one hundred thousandth of an ampere. The high-voltage DC generator 1 is a 2GF-200KV / 5mA DC high-voltage generator.
[0105] In this embodiment, the small ball 5 is suspended by a thin cotton thread 3, and the thin cotton thread 3 is fixed at one end inside the vacuum tank 1 for free rotation under the action of the electromagnetic field.
[0106] Among them, the internal pressure of the vacuum tank 4 is adjusted to a near-vacuum state to avoid interference with the movement of matter caused by the electrostatic motor effect and the ion wind effect. The variable electromagnetic field generating device can produce a gravity-like effect in a vacuum environment, driving all materials, including small balls of non-magnetic materials (such as polyethylene, plastic, etc.) to rotate or move. The time-varying electromagnetic field generated by the high-voltage DC power supply 1 can accurately control the rotation trajectory and speed of the small ball 5, and is suitable for micro-robots, precision instruments and material manipulation fields.
[0107] The present invention provides a method and device for simulating the gravitational field effect and driving the movement of matter by changing the electromagnetic field. By precisely controlling the change of the electromagnetic field, various types of matter, especially non-magnetic matter and non-conductive matter, can be driven, overcoming the limitations of existing electromagnetic force applications. The present invention has broad application potential in many fields, including micro-nano technology, medical treatment, aerospace, industrial automation, etc., and provides a new type of material manipulation technology.
[0108] The present invention can achieve high-precision control of material movement by precisely adjusting the frequency, amplitude, phase and other parameters of the electromagnetic field. The real-time feedback of the control system and the dynamic adjustment of the electromagnetic field parameters enable the movement state of the material to be precisely adjusted to achieve the required speed, trajectory and direction. The high-precision control characteristics of this technology provide more reliable solutions for the fields of industrial automation, material handling, micro-robotics, etc.
[0109] In summary, the present invention generates or simulates the gravitational effect through the time-varying characteristics of the electromagnetic field, breaking through the limitations of traditional electromagnetic force driving technology, and can not only drive various types of substances, but also achieve high-precision and flexible material motion control. This technology has great application potential and can be widely used in many fields such as micro-nano technology, biomedicine, aerospace, industrial automation, etc., with significant technical advantages and economic value.
[0110] Through the above detailed steps, the device of the present invention for driving the target object to move by generating a gravitational field effect by changing the electromagnetic field is used to execute the steps of the method for driving the target object to move by generating a gravitational field by changing the electromagnetic field in the above embodiment, which will not be repeated here.
[0111] The above are exemplary embodiments disclosed in the present invention, but it should be noted that various changes and modifications may be made without departing from the scope disclosed in the embodiments of the present invention as defined in the claims. The functions, steps and / or actions of the method claims according to the disclosed embodiments described herein do not need to be performed in any particular order. In addition, although the elements disclosed in the embodiments of the present invention may be described or required in individual form, they may also be understood as multiple unless explicitly limited to the singular.
[0112] It should be understood that, as used herein, the singular form "a" or "an" is intended to include the plural form as well, unless the context clearly supports an exception. It should also be understood that, as used herein, "and / or" refers to any and all possible combinations of one or more of the items listed in association. The serial numbers of the embodiments disclosed in the above embodiments of the present invention are for description only and do not represent the advantages and disadvantages of the embodiments.
[0113] A person skilled in the art should understand that the discussion of any of the above embodiments is only exemplary and is not intended to imply that the scope of the disclosure of the embodiments of the present invention (including the claims) is limited to these examples; under the concept of the embodiments of the present invention, the technical features in the above embodiments or different embodiments can also be combined, and there are many other changes in different aspects of the embodiments of the present invention as above, which are not provided in detail for the sake of simplicity. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the embodiments of the present invention should be included in the protection scope of the embodiments of the present invention.
Claims
1. A method for generating a gravitational field by changing an electromagnetic field to drive a target object to move, characterized in that: The method comprises the following steps: Generate a time-varying electromagnetic field in the space where the target is located by means of a variable electromagnetic field generating device; Adjust the frequency, amplitude and phase of the time-varying electromagnetic field to produce the effect of a changing magnetic field in space; Based on the time-varying electromagnetic field, a force is generated on the target object, driving the target object to move along a predetermined trajectory or direction.
2. The method of generating a gravitational field by changing an electromagnetic field to drive a target object to move as claimed in claim 1, characterized in that: The variable electromagnetic field generating device comprises a high voltage direct current power supply, a frequency converter and an electromagnetic coil. The power supply provides an adjustable current to the electromagnetic coil, and the frequency converter is used to adjust the frequency and waveform of the current to generate a variable electromagnetic field.
3. The method of generating a gravitational field by changing an electromagnetic field to drive a target object to move as claimed in claim 2, characterized in that: The time-varying electromagnetic field is an electromagnetic field generated by a changing pulse direct current.
4. The method of generating a gravitational field by changing an electromagnetic field to drive a target object to move as claimed in claim 1, characterized in that: The target object is any material including magnetic material, non-magnetic material or non-conductive material.
5. The method of generating a gravitational field by changing an electromagnetic field to drive a target object to move as claimed in claim 1, characterized in that: Based on the time-varying electromagnetic field generating a force on the target object, when driving the target object to move along a predetermined trajectory or direction, the frequency, amplitude and phase parameters of the electromagnetic field are controlled to adjust the force of the electromagnetic field on the target object; The change in the electromagnetic field produces an effect similar to the gravitational field, affecting the position of the target object in space and driving the matter to move along a predetermined trajectory.
6. The method of generating a gravitational field by changing an electromagnetic field to drive a target object to move as claimed in claim 1, characterized in that: The method of generating a gravitational field by changing the electromagnetic field to drive the target object to move also includes: monitoring the motion state of the target object in real time through a feedback system, and adjusting and controlling the changing characteristics of the electromagnetic field according to the feedback.
7. The method of generating a gravitational field by changing an electromagnetic field to drive a target object to move as claimed in claim 6, characterized in that: The feedback system includes a position sensor, a velocity sensor and an acceleration sensor, which are used to monitor the motion state of the position, velocity and acceleration of the target object in real time.
8. A device for generating a gravitational field effect by changing an electromagnetic field to drive a target object to move, characterized in that: The device is used to execute the method of generating a gravitational field by changing an electromagnetic field as described in any one of claims 1 to 7 to drive a target object to move, the device comprising: A variable electromagnetic field generating device, used for generating a time-varying electromagnetic field, the variable electromagnetic field generating device comprising a high-voltage direct current power supply, a frequency converter and an electromagnetic coil; A control unit, used to adjust the working state of the variable electromagnetic field generating device and control the frequency, amplitude and phase of the electromagnetic field; A material support platform, used to support and position the target object, and the platform can adjust the relative position of the target object; The feedback system is used to monitor the motion state of the target object in real time and adjust the parameters of the electromagnetic field according to the monitoring data.
9. The device for generating gravitational field effect by changing electromagnetic field to drive the target object to move as claimed in claim 8, characterized in that: The variable electromagnetic field generating device comprises: A vacuum tank, in which a small ball is suspended by a thin cotton thread. The ball is made of any material and can rotate in a vacuum environment; Two coils are arranged on the upper and lower sides of the vacuum tank, wherein the upper coil is connected to a high-voltage DC pulse power supply and the lower coil is grounded; The coils are wound with silicone wires, and the wires of each coil are copper wires. The wires between the coils are disconnected and arranged staggered in space.
10. The device for generating gravitational field effect by changing electromagnetic field to drive the target object to move as claimed in claim 9, characterized in that: The breakpoint between the two coils is not insulated, forming an open breakpoint; the small ball is suspended by a thin cotton thread, and the thin cotton thread is fixed at one end in the vacuum tank for free rotation under the action of the electromagnetic field.
Citation Information
Cited By
Method and device for driving movement of target object by means of gravitational field generated by varying electromagnetic field
WO2026157422A1