Multifunctional gravitational field generator

By constructing a multifunctional gravitational field generator with positive and negative gravitational field layout in three-dimensional space, the problem of insufficient use of gravitational field in the existing technology is solved, high-precision scanning and control are achieved, scanning accuracy and signal transmission efficiency are improved, and research paths and industrial production processes in the cold core field are expanded.

CN120409033AInactive Publication Date: 2025-08-01高昆
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Patent Information

Application Number
CN202510594887.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2025-08-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The prior art is difficult to realize the multi-dimensional and coordinated comprehensive application of gravitational fields in three-dimensional space, and it lacks high-precision scanning and gravitational field control capabilities.

Method used

The multifunctional gravitational field generator is used to build a positive and negative gravitational field layout in three-dimensional space, and use an anion and cation acceleration chamber and a changing electromagnetic field to generate a gravitational field. Combined with high-precision electric field control, the precise regulation of the gravitational field and in-depth exploration of the state of matter are achieved.

Benefits of technology

It realizes high-precision scanning and control of gravitational field, improves scanning accuracy and signal transmission efficiency, expands research paths in the cold core field, and optimizes industrial production processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a multifunctional gravitational field generator. The method is developed on the basis of a unified field theory and an interference field theory, and aims to deeply explore and expand an artificial field and quality technology (the application number is 2025101271992), an artificial field interference technology and an artificial field control space-time technology. The core innovation is that a plurality of gravitational field generators are applied, and scientific layout is carried out in a three-dimensional space through positive and negative gravitational fields. Specifically, in view of the fact that the anion acceleration cabin mainly acts on light, the anion acceleration cabin is arranged at the top position; the cation acceleration cabin is arranged below the top and has key functions of scanning, light guiding, moving and the like. According to the design, an original device in an artificial field and quality technology is optimized and upgraded, and a gravitational field generation system capable of achieving three-dimensional comprehensive application is constructed.
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Description

Technical Field

[0001] The present invention focuses on the frontier integration and innovation of artificial field and scanning technology, and is a breakthrough practical technology developed based on the artificial field plus mass technology, artificial field interference technology, and artificial field control of space-time technology system. Its core innovation lies in the ability to use the principles of the artificial field to perform high-precision scanning on target substances to accurately obtain substance information, and to deeply intervene and effectively control the gravitational field characteristics of substances to achieve functional expansion and application upgrade. Background Art

[0002] The present invention optimizes and designs based on the equipment in the artificial field plus mass technology (application number: 2025101271992). Through systematic innovation and improvement, it breaks through the original technical framework and successfully constructs a new type of gravitational field generator that can achieve multi-dimensional and collaborative comprehensive application of the gravitational field in three-dimensional space, significantly improving the technical efficiency and application value.

[0003] The core advantages of the present invention are prominently manifested in its simple structure and ingenious design, which endows it with great potential for rapid cross-field adaptation and development. It can achieve high-precision detection in the scanning field, assist in efficient signal transmission in the communication field, may provide a new path for reaction regulation in the cold nuclear field, is expected to break through the existing technical bottlenecks in the field of storing light energy, and can optimize the production process in the industrial field, with extremely broad application prospects. Summary of the Invention

[0004] The present invention is rooted in the profound accumulation of artificial field plus mass technology, artificial field interference technology, and artificial field control of space-time technology, and innovatively develops a cutting-edge technology. Its core working principle is to accurately convert the dynamic change of the electromagnetic field into a gravitational field by means of high-precision control. The converted gravitational field can be divided into positive and negative gravitational fields, which are respectively applied to the target substance to deeply explore and accurately control the state evolution and internal physical laws of the substance under the action of the two gravitational fields.

[0005] To achieve the established technical goals, based on the artificial field plus mass technology, artificial field interference technology, and artificial field control of space-time technology, the present invention deeply expands, optimizes, and innovatively designs a multi-functional gravitational field generator. The following focuses on the new features and core components: Multiple groups of gravitational field generators are used to construct a positive and negative gravitational field layout system in three-dimensional space. Among them, the anion acceleration chamber focuses on the characteristics of light action and is arranged at the top; the cation acceleration chamber is placed below it and undertakes tasks such as scanning, light guiding, and moving. Positive and negative charges are accelerated in the anion and cation acceleration chambers according to the acceleration scheme. As the electric field strength increases, a strange phenomenon of mass increase and decrease appears at the two poles of the gravitational field generator - the mass of substances in the positive pole region gradually decreases, while that in the negative pole region gradually increases.

[0006] Preferably, during the implementation of the present invention, with the increase in electric field strength, significant phenomena occur in the two polar regions of the gravitational field generator: the mass of matter in the direction of the positive electrode region gradually decreases, and the mass of matter in the direction of the negative electrode region gradually increases. Regarding the principle, the changing electromagnetic field gives rise to a gravitational field, and this gravitational field further differentiates into positive and negative gravitational fields. When matter is in the negative gravitational field, its own gravitational field is weakened, which is beneficial for operations such as light guiding and movement; when in the positive gravitational field, its own gravitational field is strengthened, and it can absorb and store light energy. When the positive and negative gravitational fields act synergistically, an efficient scanning function can be achieved.

[0007] Preferably, during the implementation of the present invention, the acceleration schemes include two types: magnetic field and electric field. Subdivided by current type, they include direct current (DC) (single - direction, two - direction), alternating current (AC), and pulsed current. Their function is to drive the acceleration of positive and negative charges, form a changing electromagnetic field, avoid the interference of the electrostatic field, and ensure the stable operation of the system.

[0008] Preferably, during the implementation of the present invention, to increase the electric field strength, the present invention adopts a multi - strategy approach: increasing the power of the power supply to strengthen the foundation of the electric field energy; increasing the number of turns and diameter of the secondary coil of the transformer to optimize the electromagnetic conversion efficiency and enhance the electric field output; adding a capacitor bank to achieve the storage and release of electrical energy; configuring an inductor bank to further stabilize and enhance the electric field. By taking multiple measures simultaneously, strong support is provided for the conversion of the gravitational field.

[0009] Preferably, during the implementation of the present invention, there are three layout modes for the scanning and receiving device to adapt to different data - processing requirements. The antenna - receiving mode takes the antenna as the core, the coil - receiving mode takes the coil as the main body, and the high - voltage negative - electrode receiving mode uses a magnetic core at the high - voltage negative electrode to convert the low - voltage signal, avoiding the damage of high voltage to the circuit and ensuring the accuracy of signal reception.

[0010] Preferably, during the implementation of the present invention, the signal - amplification circuit adopts a step - by - step amplification design from a single transistor to multiple transistors to enhance the signal - amplification efficiency, ensure that the signal is fully enhanced during transmission, improve the signal quality and accuracy, resist attenuation and noise interference, and provide a clear and stable signal source for subsequent processing. The amplified analog signal is converted into a digital signal by an analog - to - digital converter (ADC) to digitalize the data, which is convenient for the computer to deeply analyze and extract key information, improving the processing efficiency and accuracy. After data acquisition, algorithms of artificial intelligence, imaging system, and audio system are integrated to quickly and accurately analyze and extract key data. Relying on the deep - learning ability and multi - dimensional information of artificial intelligence, rapid interpretation and accurate recognition of the results of the artificial - field scanning are realized, improving the data - processing efficiency and accuracy.

[0011] Preferably, during the implementation of the present invention, this technology has a scanning accuracy that theoretically approaches the extreme infinitely. The principle lies in using the gravitational field as the scanning medium, and the gravitational field is essentially constructed by spatial fluctuations. Given that space is regarded as infinitely divisible in physical theory, the gravitational field also has a fine structure, which enables the technology to perform extremely fine scanning and analysis of the target object. By precisely controlling the fluctuation characteristics of the gravitational field, it is possible to capture and analyze the structure and properties of matter at the microscopic level, achieving ultra-high-precision scanning.

[0012] Preferably, during the implementation of the present invention, in the gravitational field generator of the present invention, the anion and cation acceleration chamber is designed to be circular, and the cross-section is circular. This structure is conducive to the uniform dispersion of pressure to the inner wall of the chamber when the ionized gas is separated and pressurized, ensuring the stable operation of the equipment.

[0013] Preferably, during the implementation of the present invention, the gravitational field fluctuation is precisely controlled by the output signal. The output signal is composed of a modulation signal and a carrier signal. The carrier signal is generated through an efficient LC oscillation scheme, and its core function is to make the gravitational field fluctuation resonate with the gravitational field of matter, realizing efficient interaction.

[0014] Preferably, during the implementation of the present invention, to deeply explain the operating mechanism of the three signal receiving modes of the present invention, the following description is made. When an object moves in a uniform straight line along the x-axis at a speed v, the spatial structure will produce relative deformation, specifically manifested as the x-axis tilting. When the object's moving speed approaches the speed of light, the tilting effect intensifies. Theoretically, the x-axis rotates 90 degrees. At this time, the projected length of the space along the moving direction on the x-axis approaches zero, and the three-dimensional space degenerates into two dimensions in this direction. Given that the speed of gravitational field fluctuation is the speed of light (which can be understood in combination with the relationship between the gravitational constant and the scalar speed of light), in the extreme situation where the object moves at the speed of light, it can be analogously considered that the anti-gravitational field instantaneously diverges to infinity, and the positive gravitational field instantaneously converges to infinity. The three signal receiving modes of the antenna, coil, and high-voltage negative electrode of the present invention are all in the positive gravitational field region. The gravitational field changes with time to induce an electric field, thereby realizing signal processing. In practical applications, the high scanning accuracy stems from the precise control of the gravitational field and advanced signal processing technology.

[0015] In summary, the technical effects and advantages of the present invention.

[0016] The present invention innovatively applies the changing electromagnetic field to the field of gravitational field generation, opening up a new technical path. On this basis, we clearly define and strictly define for the first time two distinct gravitational field forms: the positive gravitational field and the anti-gravitational field. Using the independently developed gravitational field generator, positive and anti-gravitational fields can be precisely generated and used to interfere with matter. The interference effects are significantly different: under the interference of the anti-gravitational field, the gravitational field intensity of matter will gradually weaken; while under the interference of the positive gravitational field, the gravitational field intensity of matter will gradually increase.

[0017] The multifunctional gravitational field generator proposed in this paper features a deeply optimized overall design, providing solid technical support for a variety of scenarios requiring quantitative analysis. This generator boasts outstanding advantages such as simplicity and ease of operation, demonstrating significant potential for rapid development and application in a variety of fields, including scanning detection, communications transmission, cold fusion assistance, optical energy storage, and industrial manufacturing. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to comprehensively and accurately present the technical details and structural features of the embodiments of the present invention or the prior art solutions, the contents of the relevant drawings are briefly described. It should be emphasized that the drawings shown here are only auxiliary visual explanatory materials for some embodiments of the present invention. Their core value lies in presenting key elements in an intuitive graphical form, rather than covering all potential application scenarios. For technical personnel with professional qualities in this field, based on the basic principles and structural framework presented in these drawings, they can relatively easily deduce and construct other related or expanded graphic solutions and specific implementation paths without having to pay extraordinary creative labor. The key significance of these drawings is to build an intuitive and clear cognitive bridge to help technical personnel deeply understand the technical core of the present invention and further explore its innovative application space in multiple application scenarios.

[0019] Figure 1 A schematic diagram of the overall layout of the gravitational field generator is shown.

[0020] Figure 2 A schematic diagram of the overall layout of a single gravitational field generator is shown.

[0021] Figure 3 A mind map showing a single gravitational field generator.

[0022] Figure 4 A schematic diagram of the partial structure of a single gravitational field generator is shown.

[0023] Figure 5 Schematic diagram showing three signal reception modes.

[0024] Figure 6 Schematic diagram showing the possible design types of anion and cation acceleration chambers and polar charge separation system containers.

[0025] Figure 7 A schematic diagram showing the acceleration scheme.

[0026] Figure 8 A schematic diagram showing the electric field, magnetic field, and gravitational field being perpendicular to each other and the gravitational field at its maximum value.

[0027] Figure 9 It shows how the gravitational field is further divided into positive gravitational field and anti-gravitational field.

[0028] Figure 10 Shows the structural schematic diagram of the LC oscillation circuit and the corresponding frequency calculation formula.

[0029] Figure 11 Shows the waveform schematic diagram of the electromagnetic wave and attaches the calculation formula of its frequency.

[0030] Figure 12 Shows the mathematical expression form of the space-time unification equation and attaches the corresponding schematic diagram to help understand its physical meaning.

[0031] Figure 13 Shows the schematic diagram of how to generate the output signal by combining the modulation signal and the carrier signal.

[0032] Figure 14 Shows the derivation process, revealing the similarity between the space-time unification equation and the wave speed of the electromagnetic wave.

[0033] Figure 15 Shows the schematic diagram of the positive and negative gravitational fields acting on the matter gravitational field respectively.

[0034] Figure 16 Shows the schematic diagram of the rotation of a certain axis in the space moving at the speed of light.

[0035] Figure 17 Shows the schematic diagram that the anti-gravitational field instantaneously diverges to infinity and the positive gravitational field instantaneously converges to infinity.

[0036] Figure 18 Shows the schematic diagram of the relationship between the universal gravitational constant of the gravitational field and the scalar speed of light.

[0037] Figure 19 Shows the core theoretical framework and its key formulas on which the present invention is based.

[0038] In the illustrations shown in FIGS. 1 to 7, the specific meanings corresponding to each reference numeral are described in detail as follows: Gravitational field generator 1: This generator is constructed by combining a number of independent single gravitational field generating units. Cation acceleration chamber 101: A ring-shaped closed cavity structure for accommodating cations. Anion acceleration chamber 102: A ring-shaped chamber specifically for loading anions. Cation acceleration chamber 103: Also a ring-shaped cavity for loading cations. Acceleration scheme 104: Covers magnetic field drive schemes and electric field drive schemes. According to the current characteristics, it specifically includes unidirectional direct current schemes, bidirectional direct current schemes, alternating current schemes, and pulsed current schemes. Receiving device 105: Has three signal receiving modes to adapt to different signal sources and transmission characteristics. Antenna reception 1051: Captures and receives signals of specific frequency bands through antenna devices. Coil reception 1052: Receives signals by means of coil devices using the principle of electromagnetic induction. High-voltage negative pole reception 1053: At the high-voltage negative pole part, using the electromagnetic conversion characteristics of the magnetic core, converts high-voltage signals into low-voltage signals for subsequent processing. Encapsulation 106: Performs integrated encapsulation processing on core devices such as computers, servers, power supplies, transformers, and polar charge separation systems. Substances 201, 202: As the objects of action or scanning objects, their material properties cover two major categories: metals and non-metals. Detailed implementation manner

[0039] The following will closely focus on the illustrated materials attached to the embodiments of the present invention and deeply and comprehensively analyze and interpret the specific structure, operating logic, and other details of the technical solutions in this embodiment. It should be clearly emphasized that the embodiments listed here are only typical representatives among the vast number of feasible implementation solutions of the present invention. Its core role is to present the technical principle through specific cases, rather than exhausting all potential application scenarios. For those skilled in the art, based on the core technical points and operating mechanisms disclosed in the embodiments of the present invention, it is relatively easy to deduce and design other related or extended implementation solutions, and such solutions should all fall within the scope of the technical rights claimed by the present invention.

[0040] Overview of the embodiment: This embodiment is a major breakthrough achieved through in-depth research relying on long-term technical accumulations such as artificial field plus mass technology, artificial field interference technology, and artificial field control of space-time technology. In this embodiment, the present invention uses multiple gravitational field generators and scientifically arranges positive and negative gravitational fields in three-dimensional space. Specifically, since the anion acceleration chamber mainly acts on photons, it is arranged at the top position; below the top is the cation acceleration chamber, which undertakes core functions such as scanning, light guiding, and material movement. The positive and negative charges in the anion and cation acceleration chambers are driven according to specific acceleration schemes. As the electric field strength gradually increases, significant differences appear in the two polar regions of the gravitational field generator: in the direction of the positive pole region, the mass of substances shows a gradual attenuation; in the direction of the negative pole region, the mass of substances shows an increasing trend.

[0041] Specifically, focusing on the construction details of the gravitational field generator, its power supply circuit, signal transmission circuit, drive control circuit, rectification and filtering circuit, as well as key physical modules such as gas ionization, efficient charge separation, and precise acceleration of charged particles, have all achieved scientific design and innovation on the basis of systematic integration and optimization of existing technologies. Given that the above components and their working principles are mature technologies and widely recognized in this field, to avoid redundant content, the technical details will not be elaborated here. The core innovation of this embodiment lies in generating positive and negative gravitational field fluctuations through the gravitational field generator and acting on the target substance respectively to achieve dynamic scanning and in-depth exploration of the motion state and mass change of the substance.

[0042] Specifically, in this embodiment, as shown in Figures 2 to 19, the overall architecture layout of a single gravitational field generator is constructed, covering some structural modules, mind map frameworks, operating principles, and theoretical bases, which are all the key foundations for the realization of the artificial field technology. As shown in Figure 3, a mind map for supplying power to the gravitational field generator is presented, which provides a core framework and idea guidance for the power supply scheme design. As shown in Figures 1 to 7, the encapsulation 106 is mainly used for integrating and encapsulating key devices such as computers, servers, power supplies, transformers, and polar charge separation systems.

[0043] Specifically, in this embodiment, as shown in Figure 1, the gravitational field generator 1 is composed of a cation acceleration chamber 101, an anion acceleration chamber 102, a cation acceleration chamber 103, an acceleration scheme 104, a receiving device 105, and an encapsulation 106. Among them, the cation acceleration chamber 101 and the cation acceleration chamber 103 are connected to the high-voltage positive electrode, and the anion acceleration chamber 102 is connected to the high-voltage negative electrode. The acceleration scheme 104 is used to synchronously accelerate the charged particles in the cation acceleration chamber 101, the cation acceleration chamber 103, and the anion acceleration chamber 102. As shown in Figure 7, the acceleration scheme 104 includes a magnetic field acceleration scheme and an electric field acceleration scheme, which are divided according to the current characteristics and cover various forms such as direct current (DC), alternating current (AC), and pulse current. As shown in Figure 1, substances 201 and 202 are placed in the areas of the cation acceleration chamber 103 and the anion acceleration chamber 102 of the gravitational field generator 1 respectively. At the same time, as shown in the mind map of Figure 3, the power supply outputs an electric field with specific signal characteristics to provide stable power support for the gravitational field generator 1.

[0044] Specifically, in this embodiment, in combination with the structural layouts of FIGS. 1 to 7: When the cation acceleration chamber 103 of the gravitational field generator 1 is connected to the high-voltage positive electrode and the anion acceleration chamber 102 is connected to the high-voltage negative electrode, if a high-frequency anti-gravitational field fluctuation is output, the degree of movement of the substance 201 will change sharply; over time, as shown in FIG. 15, its mass gradually decreases. When the anti-gravitational field fluctuation is low-frequency, the amplitude of movement of the substance 201 also changes significantly, and the mass also gradually decreases. This characteristic can be applied to operation scenarios such as light guiding and substance movement.

[0045] Specifically, in this embodiment, also based on the structure of FIGS. 1 to 7: When the cation acceleration chamber 101 of the gravitational field generator 1 is connected to the high-voltage positive electrode and the anion acceleration chamber 102 is connected to the high-voltage negative electrode, if a high-frequency positive gravitational field fluctuation is output, the degree of movement of the substance 202 will increase significantly; as time progresses, as shown in FIG. 15, its mass gradually increases. When the positive gravitational field fluctuation is low-frequency, the amplitude of movement of the substance 202 also changes significantly, and the mass also gradually increases. This function can be used to absorb light energy and achieve energy storage.

[0046] Specifically, in this embodiment, under the layout shown in FIGS. 1 to 7: When the cation acceleration chamber 101 and the cation acceleration chamber 103 of the gravitational field generator 1 are simultaneously connected to the high-voltage positive electrode and the anion acceleration chamber 102 is connected to the high-voltage negative electrode, positive and anti-gravitational fields can be generated synchronously. As shown in FIGS. 16 and 17, the anti-gravitational field instantaneously diverges to infinity, and the positive gravitational field instantaneously converges to the center. After the anti-gravitational field acts on the substance 201, its direction is reversed and a positive gravitational field is formed, and its gravitational field signal is captured by the receiving device 105. Subsequently, as shown in FIGS. 3 to 5, the analog signal is processed by the amplifier circuit, then converted into a digital signal through analog-to-digital conversion, and transmitted to the computer and the server. Finally, the artificial intelligence system analyzes the signal data to provide a research basis for scientific researchers.

[0047] Specifically, in this embodiment, referring to FIG. 5, the receiving device 105 has three signal receiving modes, namely antenna reception 1051, coil reception 1052, and high-voltage negative electrode reception 1053. Among them, antenna reception 1051 captures signals with the help of antenna equipment, and coil reception 1052 receives signals relying on coil equipment. Both belong to the category of low-voltage equipment. For the high-voltage negative electrode reception 1053 mode, it is necessary to convert the high-voltage signal into a low-voltage signal in the high-voltage negative electrode region with the help of a magnetic core to avoid the potential damage risk of the high-voltage signal to the subsequent circuit.

[0048] Specifically, in this embodiment, as can be seen from FIGS. 1 to 4, in the design of the gravitational field generator 1 of the present technical solution, the cation acceleration chamber 101, the cation acceleration chamber 103, and the anion acceleration chamber 102 all adopt an annular structure, and their cross-sections are circular. This structural design can ensure uniform distribution of the pressure of the gas on the inner wall of the chamber during the pressurization process after the ionization gas is separated, thus ensuring the stability and reliability of the equipment operation.

[0049] The working principle of the present invention is centered around the innovative theory of converting a changing electromagnetic field into a gravitational field. Based on this theory, the gravitational field is further precisely divided into two major types: the positive gravitational field and the anti-gravitational field. In the actual application process, the present invention cleverly uses a voltage with specific signal characteristics to power the gravitational field generator, thereby exciting gravitational field fluctuations, realizing dynamic scanning of substances, and deeply exploring the motion state and mass change degree of substances. The significant advantage of the present invention lies in its simple and efficient design architecture, which is easy to implement. This characteristic makes it valuable for rapid development and application in multiple fields, covering many cutting-edge and practical fields such as scanning detection, communication transmission, cold fusion research, light energy storage, and industrial manufacturing.

[0050] Finally, it should be emphasized that the above content only elaborates in detail on a certain preferred embodiment of the present invention, and its purpose is by no means to impose any form of limitation on the broad protection scope enjoyed by the present invention. Although we have comprehensively and deeply analyzed and interpreted the present invention around this embodiment, those skilled in the art should clearly recognize that they can fully make flexible adjustments according to the core technical principles revealed in the foregoing embodiments, perform equivalent replacements and optimization upgrades on key technical elements. As long as such adjustments, replacements, or optimization measures do not deviate from the core idea and basic principles of the present invention, whether they are manifested as changes in morphological structure, equivalent replacement of technical means, or improvement of performance indicators, they should be regarded as covered by the protection scope claimed by the present invention. The present invention always adheres to an open attitude, warmly welcomes and actively encourages continuous exploration and innovation in this field, with a view to continuously expanding its application dimensions and technical boundaries and promoting the progress of science and technology to a new height.

Claims

1. A multi-functional gravitational field generator, the core features of which are as follows: This invention is an innovative achievement based on artificial field plus mass technology, artificial field interference technology, and artificial field control of space-time technology. The following will focus on its new features and core components. The device uses multiple gravitational field generators, which are scientifically arranged with positive and negative gravitational fields in three-dimensional space. Among them, The anion acceleration chamber targets light, so it is arranged at the top; the cation acceleration chamber is placed below the top and undertakes key functions such as scanning, light guiding, and movement. The positive and negative charges inside the two are driven by specific acceleration schemes. As the electric field strength climbs, unique phenomena appear in the two-pole regions of the generator: the mass of substances in the positive-pole direction gradually decreases, while that in the negative-pole direction gradually increases.

2. The multifunctional gravitational field generator according to claim 1, characterized in that: As the electric field strength increases, two remarkable phenomena appear in the two-pole regions of this gravitational field generator, that is, the mass of substances gradually decreases in the positive-pole region direction, and the mass of substances gradually increases in the negative-pole region direction. Regarding the principle, a changing electromagnetic field will give rise to a gravitational field, and this gravitational field can be further divided into positive and negative gravitational fields. When a substance is surrounded by a negative gravitational field, the intensity of its own gravitational field will be weakened, thereby realizing operations such as light guiding and movement; if a substance is surrounded by a positive gravitational field, the intensity of its gravitational field will continue to increase, and the purpose of absorbing and storing light energy can be achieved. When the positive and negative gravitational fields act together, the scanning function can be realized.

3. A multi-functional gravitational field generator according to claim 1, characterized in that: In terms of the acceleration scheme, this technology adopts a dual-path of magnetic field and electric field, and is divided into single-direction direct current, two-direction direct current, alternating current, and pulse current schemes based on the current type. The core function of these schemes is to drive the acceleration of positive and negative charges, generate a dynamically changing electromagnetic field, and effectively avoid the interference of the electrostatic field to ensure the stable operation of the system.

4. A multifunctional gravitational field generator according to claim 1, characterized in that: To enhance the electric field strength, this technology implements a multi-dimensional optimization strategy: by increasing the power of the power supply to strengthen the foundation of the electric field energy, increasing the number of turns and diameter of the secondary coil of the transformer to improve the electromagnetic conversion efficiency and enhance the electric field output, adding a capacitor bank to achieve efficient storage and release of electric energy, and configuring an inductor bank to further stabilize and strengthen the electric field. The above strategies work together to significantly increase the electric field strength, laying a foundation for the subsequent gravitational field conversion.

5. A multi-functional gravitational field generator according to claim 1, characterized in that: In terms of the layout of the scanning and receiving device, this technology designs three adaptation modes to meet different data processing requirements: the antenna receiving mode relies on the antenna to complete signal capture, the coil receiving mode uses the coil to achieve data acquisition, and the high-voltage negative receiving mode configures a magnetic core at the high-voltage negative end to convert the high-voltage signal into a low-voltage signal, avoiding potential damage to the circuit caused by high voltage.

6. A multifunctional gravitational field generator according to claim 1, characterized in that: At the signal processing level, this technology adopts a step-by-step amplification circuit design from single-tube to multi-tube. By strengthening the signal layer by layer, it effectively resists attenuation and noise interference during transmission, providing a clear and stable signal basis for subsequent processing. The amplified analog signal is converted into a digital signal by an analog-to-digital converter (ADC), which is convenient for the computer to deeply analyze and extract information, improving the accuracy and efficiency of data processing. At the same time, artificial intelligence, imaging, and audio algorithms are integrated to analyze data in multiple dimensions, realizing the rapid interpretation and accurate recognition of the results of the artificial field scan.

7. A multifunctional gravitational field generator according to claim 1, characterized in that: In terms of scanning accuracy, this technology relies on the gravitational field as the scanning medium and achieves theoretically infinitesimal scanning accuracy based on the spatial fluctuation characteristics. The gravitational field is composed of spatial fluctuations. The theoretically infinite divisibility of space endows it with a fine structure, enabling the technology to penetrate into the microscopic level to capture and analyze the structure and properties of substances.

8. A multifunctional gravitational field generator according to claim 1, characterized in that: In terms of structural design, in the gravitational field generator of this technology, the cation and anion acceleration chamber adopts an annular design with a circular cross-section. This structure is conducive to the uniform distribution of the inner wall pressure during the pressurization of the ionized gas, ensuring the stable operation of the acceleration chamber.

9. A multifunctional gravitational field generator according to claim 1, characterized in that: The gravitational field fluctuations generated by this technology are precisely regulated by the output signal. This output signal is composed of a modulation signal and a carrier signal, and the carrier signal can be generated by means of an efficient LC oscillation scheme. The core role of the output signal is to coordinate the gravitational field fluctuations with the gravitational field of matter, enabling them to reach a resonance state, thereby achieving the effective control of the gravitational field.

10. A multifunctional gravitational field generator according to claim 1, characterized in that: To clearly explain the operating mechanisms of the three signal reception modes, the following description is provided: When an object moves uniformly along the x-axis at a speed v, the spatial structure changes relatively, and the x-axis tilts. When the object's speed approaches the speed of light, the tilt intensifies, and theoretically, the x-axis rotates by 90 degrees. At this time, the projected length of the space in the direction of the object's motion on the x-axis approaches zero, and the three-dimensional space degenerates into two dimensions in this direction. Since the speed of gravitational field fluctuations is the speed of light, in the extreme case of the object moving at the speed of light, the anti-gravitational field can be analogized to instantaneously diverge to infinity, and the positive gravitational field instantaneously converges to infinity. The three reception modes (antenna, coil, high-voltage negative electrode) are all in the region of the positive gravitational field. The positive gravitational field generates an electric field as it changes over time, providing a basis for signal processing. In practical applications, the high scanning accuracy stems from the fine control of the gravitational field and advanced signal processing technologies.