Copernic universal permanent energy (COUPE)
A closed-loop system using permanent magnet generators and motors self-generates electricity, addressing the limitations of external energy sources by producing continuous and unlimited power without storage, thus reducing costs and environmental impact.
Patent Information
- Application Number
- PCT/FR2024/000068
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-06-18
- Publication Date
- 2025-12-26
AI Technical Summary
Existing electricity production systems rely on external energy sources that are often expensive, scarce, or have environmental impacts, and require significant investments and energy storage solutions.
A closed-loop system using permanent magnet synchronous generators and motors, where the energy produced is self-injected to drive the alternator, exceeding the energy consumed, thus generating continuous and unlimited electricity without external inputs.
This system provides cost-effective, continuous, and environmentally friendly electricity production, eliminating the need for external resources and energy storage, while reducing environmental pollution and energy costs.
Smart Images

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Description
TITLE OF THE INVENTION: COPERNIC UNIVERSAL PERMANENT ENERGY COUPE DESCRIPTION
[0001] COPERNIC UNIVERSAL PERMANENT ENERGY, abbreviated COUPE, is a closed-circuit, loop-based permanent electrical energy generation device, mainly comprising several permanent magnet synchronous generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8), fixed on the transverse shaft of a permanent magnet synchronous electric motor (4), whose rotor rotation drives that of the generator rotor, after a brief energization by the UPS (1) or the EDF electrical network (!'), through the VFD frequency converter (3) of a power compatible with the motor (4), for the production of a cumulative quantity of electricity greater than that of the motor (4), so as to compensate for energy losses, and to annihilate the principle of the law of conservation of energy, in the diagram [Fig.l] self-supply of the loop system, in a closed circuit from the electricity production of the Generators, passing through the AVFR Regulator (10), then the self-injection of electricity through the UPS (1) and the VFD Variator (3) which supplies the Motor (4).
[0002] TECHNICAL FIELD: This invention falls within the general field of electricity production, both at the level of power plants and individual domestic generators and electric vehicles of all kinds. It achieves the assembly of common electrical equipment, in an arrangement such as to produce electricity continuously, without any external input, after energization by the electrical grid or the UPS (1) by converting the direct current from the batteries into alternating current, according to the appropriate voltage and power, taking care to compensate for energy losses, and the annihilation of the principle of conservation of energy, thanks to the cumulative production of electricity exceeding that consumed by the Motor (4). It aims to ensure the continuous production of electricity, without any external input, except for the system startup which might require a few seconds of power consumption from the EDF (T) urban grid or the conversion of direct current to suitable alternating current by a UPS (1). After renewable energies, particularly solar and wind power, this invention of continuous energy can undoubtedly be described as a Copernican revolution! Unlike the use of external inputs to power an electricity generator, the system aims to self-generate the electricity needed to rotate the rotor inside the stator of a generator or alternator to produce electricity.
[0003] PRIOR TECHNOLOGY: Prior technology consists of using external elements, in the form of inputs (gas, oil, coal for thermal energy; steam for geothermal energy; hydrogen for thermal energy and fuel cells; uranium and thorium for energy Nuclear power; water and waves for hydroelectric and marine energy; wind for wind energy; the sun and light for solar and photovoltaic energy...) generally power a moving engine or turbine, whose driving effect ensures the rotation of an alternator's rotor, which generates electricity. The common thread among all these energy sources is the need for external elements to produce electricity. These elements require a continuous supply of external resources, the ultimate principle of which is to drive the rotation of a turbine or rotor inside an alternator's stator to generate electricity from the created magnetic field. The same applies to the sun and photovoltaic energy, the principle of which is to transform the energy carried by photons in light into electricity. Thus, to date, energy production relies exclusively on external sources, often expensive and, in some cases, scarce over long periods, or intermittent in others. The eventual depletion of certain sources, such as gas, oil, and coal, is predicted and destined for obsolescence. The most efficient energy sources, particularly nuclear power, are the subject of numerous security controversies. Uranium and thorium are also destined for depletion. Furthermore, the implementation of these energy sources often requires significant and costly investments, primarily concentrated on the power generation equipment. This is notably the case for hydroelectric dams, thermal power plants, and nuclear power plants. For the production of large-scale solar and wind energy, this requires vast fields, with unavoidable environmental consequences.
[0004] PROBLEMS TO BE SOLVED: This invention solves the problem of providing external, often expensive, elements for the production of electricity, in the various forms, consisting of driving the rotation of a turbine, the rotor of an alternator, or by the transformation of photovoltaic energy. The solution to the problem lies in the self-injection of the energy produced to power the permanent magnet electric motor driving the alternator in a closed, continuous, and unlimited loop. The difference from the past is the use of the internal energy produced by the system to ensure the rotation of the rotor of a permanent magnet generator / alternator. However, energy losses and the principle of energy conservation are offset by a greater energy output than the energy consumed to produce it. This is where the innovation lies. Thus, the problem of energy costs linked to the cost of inputs such as gas and oil finds a solution here. Similarly, the uncertainties associated with wind and solar energy, which necessitate energy storage in batteries, are resolved through the continuous and unlimited production of energy, eliminating the need for storage and thus limiting the use of storage batteries, particularly in wind, solar, and electric vehicle applications. The energy produced is therefore... consumed instantly on demand. To address the problem of electricity transmission, this invention makes it possible to decentralize electricity production by bringing it closer to consumers, also avoiding the risk of power blackouts. Consequently, this invention also provides a solution to the problems of global warming and environmental and atmospheric pollution linked to these external inputs. Therefore, without any exaggeration, it can be stated that this invention will contribute to saving the world in the environmental and development sectors related to energy, which is inexpensive, readily available, and unlimited.
[0005] STATEMENT OF THE INVENTION AND PRINCIPLE: The general principle of electricity production essentially relies on supplying fundamental mechanical energy to the rotation of a turbine or the rotor of an alternator to generate electricity. Efforts to produce electricity are therefore focused on the mechanical energy required to rotate the alternator's rotor. This justifies the enormous investments made in the mechanical energy necessary for the rotation of the turbine or alternator. This represents a significant and very costly detour. Within the framework of this invention, it is a question of launching Generators or Alternators whose cumulative electricity generated would be used to supply in a loop the electric Motor which initiated the rotation of the rotor of said alternators, called here self-supply of electricity or self-injection of electricity, taking into account the energy losses compensated by the level of energy produced being greater than the consumption of the motor. Thus, this invention aims to generate electricity continuously and indefinitely, without any external source. It is simultaneously a solution to various problems related to energy supply, cost, storage, and transportation, as well as their environmental consequences. QUESTION: Why would nuclear energy, with its serious risks and the possible development towards nuclear weapons, be tolerated compared to the current energy production system that guarantees both total safety and environmental protection, hidden under the law of conservation of energy!
[0006] ENERGY LOSS COMPENSATION: The problem of energy losses and the law of conservation of energy are solved by the closed-circuit self-supply of a permanent magnet synchronous motor (4) driving permanent magnet synchronous generators Gt1 (5), Gt2 (6), Gt3 (7), and Gt4 (8). The combined power output of these generators exceeds the rated power of the motor (4), taking into account component compatibility in terms of voltage, frequency, load capacity, perfect coupling, and correct synchronization between the synchronous generators to ensure stable operation. The use of a variable frequency drive (VFD) (3) allows control of the power supplied to the motor (4) to ensure its operation within the specified parameters. the limitations of its design. The combined electrical power generated in parallel by Generators Gtl (5), Gt2 (6), Gt3 (7), and Gt4 (8) is fed into the Regulator (10) to stabilize the electricity produced. Excess electricity production is diverted to domestic or industrial consumption, or fed back into the urban electricity grid via a grid coupling device. This energy loss compensation could potentially be reinforced, if necessary, by installing a capacitor bank. The cooling system for the components is ensured by installing the electrical production device in a cold room with adjustable temperature, equipped with fans and air extractors if necessary. As a reminder, the law of conservation of energy states that energy cannot be created or destroyed—only converted from one form of energy to another. This means that a system always has the same amount of energy unless energy is added from the outside. In this case, the addition is made internally, by an appropriate number of Generators Gt1 (5), Gt2 (6), Gt3 (7), and Gt4 (8), driven by the same Motor (4), whose cumulative self-generating energy is greater than that of the Motor (4) that drives them. Therefore, there is no creation of energy ex nihilo. Thus, the drawing [Fig. 1] represents four permanent magnet synchronous generators Gt1 (5), Gt2 (6), Gt3 (7), and Gt4 (8) coupled in parallel, on either side, to the two ends of the double transverse transmission shaft of the permanent magnet synchronous motor (4) which drives them in the rotation of the rotor. The two generators Gt1 (5) and Gt2 (6), located near the engine, also have a double transverse transmission shaft and are coupled to the two generators Gt3 (7) and Gt4 (8), at each end. The combined output of the four synchronous generators Gt1 (5), Gt2 (6), Gt3 (7), Gt4 (8), which can significantly exceed the rated power of the Synchronous Motor (4), the VFD (3) feeds the appropriate amount of electricity back into the Motor (4). Nothing would then impede the continuous self-sufficiency of the closed-loop system and the permanent and unlimited production of energy, while the surplus production supplies ordinary electricity needs. This is the basic principle of energy loss compensation, which can be adjusted according to the technical specifications. Any necessary adjustments regarding speed, the number of generators connected in parallel, and whether the motor speed is sufficient to drive the generators, can be made by increasing the motor's rotational speed or reducing the generators' speed through careful selection of their respective power outputs. This ensures the reliability of this closed-loop, continuous energy production system, which operates without external input. The prototype development process allows for fine-tuning all parameters to achieve optimal system reliability, durability, and safety. Furthermore, it should be noted that technological advances allow manufacturers to significantly reduce various energy losses, including: Joule effect losses in the stator (PJs) 40%; Joule effect losses in the rotor (PJr) 25%; Ferromagnetic losses (Pfe) 20%; Additional losses (Psup) 10%; Mechanical losses (Pmec) 5%. A permanent magnet generates its own magnetic field autonomously and without the need for an induced current. There are no iron losses or Joule losses in the rotor. The concept of slip does not apply to synchronous motors. By eliminating rotor Joule losses, a reduction in operating temperature is achieved. By eliminating rotor Joule losses, the synchronous motor offers an IE5 energy efficiency! The use of a frequency converter (3) coupled with a synchronous motor (4) and the self-injection of power exceeding the consumption of the drive motor (4) ensures good energy compensation, produced by synchronous generators Gt1 (5), Gt2 (6), Gt3 (7), and Gt4 (8). In addition to compensating for energy losses by self-injection of electricity with an energy power exceeding that of the Motor, the installation of a capacitor bank which acts as a reactive energy source allows electrical energy to be stored in unitary, single-phase or three-phase capacitors, and released when necessary. Thus, this range of energy loss compensation options ensures that this device provides a continuous and unlimited supply of electricity without any external input. The integration of a double-conversion online UPS (1), under the required conditions, also ensures complete autonomy for startup after the batteries have been recharged, which are also kept constantly charged.
[0007] DESIGN OF THE INVENTION AND DESCRIPTION: by way of illustration, [Fig.1] and [Fig.2] describe the different aspects, technical characteristics and advantages. Fig. 1 is a general view of the arrangement of the permanent electricity production device, supplying 120kW AC 380V three-phase, of which 65kW is available for various uses, while 55kW supplying the VFD frequency converter (3) is reserved for the device's own electricity consumption, after compensation of energy losses, according to a circuit with UPS (1) or not, with the possibility of reinjection into the public network;
[0008] [TAB.l] TECHNICAL SPECIFICATIONS, CONNECTION AND VALUES This table [Table 1] describes the connections and technical compatibility values between the different electrical equipment used for the assembly of a 30kW continuous and unlimited electricity production module, without external input, as follows: [Table 1]
[0009] VALUE RELATIONSHIPS BETWEEN DIFFERENT EQUIPMENT This table expresses the parameters and ratios between the different components, based on a production output of 30kW generated for a Permanent Magnet Synchronous Generator. To facilitate the construction of this device, the work will primarily be based on 380V three-phase 50Hz AC current. For parts requiring 220V, the step-up transformers T1 (1") and step-down transformers T2 (12) will easily meet this requirement. Value ratios between the different equipment are necessary to ensure the proper functioning of the entire system, for example for a 30KW electricity production module or group as follows: 001. For a Generator power of 30 KW 50Hz, an electric Motor (4) of 45KW and 75Hz is required, i.e. a ratio of 1KW of the Generator (5) to 1.5KW of the electric Motor (4); 002. Similarly, there is also a power ratio between the 1KW Electric Motor (4) and the 1.22KW Frequency Converter (3), i.e., a 45KW Electric Motor (4) and a 55KW VFD (3); 003. The power of the Regulator (10) is equal to that of the Generator (5): 1 / 1 and the same frequency 50Hz, i.e. a Generator (5) of 30KW for an AFVR Stabilizer (10) of (30KW); 004. The power of a UPS (1) is 1.20 times the power of the VFD (3), i.e., a 66kVA UPS (1) for a 55kW VFD (3); To increase the power of TUPS (1), it is enough to mount several UPSs in parallel in a rack cabinet; 005. The installation of a UPS (1) requires a sufficiently ventilated space, or with industrial fume hoods if necessary, in order to avoid the accumulation of potentially explosive hydrogen gases which may be released under operating conditions, even during a battery equalization charge;
[0010] AREAS OF APPLICATION: Following the same principles of electrical equipment assembly, this invention applies to all areas including: generator sets, power plants, public and private sectors, industry, vehicles, trains, subways, trams, tractors, agricultural machinery, ships, airplanes, motorcycles, bicycles, spacecraft, propulsion vehicles, any system requiring an independent power supply... For applications in confined spaces, research with manufacturers would allow for the customization of scale models. With regard to rolling and flying equipment, the device described for the electric vehicle without recharging [Fig.5] also applies.
[0011] ADVANTAGES: The energy crisis linked to the supply of Gas and Oil has led to a general electricity deficit and a rise in bills, with serious consequences, the bankruptcy of many companies, and inflation for the impacted economies. In view of the current energy situation, this unprecedented invention makes it possible to provide a solution to the major problem of energy in the world at a lower cost, with unlimited availability and power, by implementing existing common electrical equipment. This invention arrives at a crucial time to alleviate the world's suffering. Therefore, we must prioritize the benefits the world could derive from it. It reinforces existing technological, environmental, and economic systems. By 2035, the EU envisions the production of exclusively electric vehicles within Europe. This project offers the world a new economic paradigm, with two fundamental objectives: to alleviate the burden on the global population by providing a definitive solution to the energy problem; and to preserve the world and its environment. According to a recent report on global energy forecasts from the International Energy Agency (IEA), electricity demand is expected to grow by 60%, and much more, over the next 20 years. This project is the ultimate solution. No one can stop progress!
[0012] DEVICE DESCRIPTION 001. REPRESENTATION OF DRAWINGS 1. The Drawing [Fig.1] represents the general assembly diagram of the elements of the Device for the continuous production of electricity in a closed and looped circuit, unlimited, and without external input; 2. Drawing [Fig.2] represents the same diagram as figure [Fig.1], and emphasizes the central role of the UPS (1), necessary for the autonomous start-up of the Device; 3. The Drawing [Fig.3] represents the modeling and grouping into a compact block of the elements enabling the proper functioning of the Device to which the Motor (4) and the Generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8) are connected; 4. The Drawing [Fig.4] describes the process of multiplying the power of the electricity generated by 10 modules (17) of 10MW Generators mounted in parallel, of a 100 MW power plant (19); 5. The Drawing [Fig.5] represents an electric vehicle without recharging, whose electrical supply is provided by a coaxial permanent magnet synchronous motor (4), coupled at each end of the transverse rotor, to two permanent magnet synchronous generators Gtl and Gt2 for electrical production, the transmission shaft of the vehicle is connected to the transverse rotor of the motor (4) for locomotion; 002. THE COMPONENTS OF THE DRAWING [Fig. 1]: 1. UPS (1) 66kva AC 50Hz 380V three phase; 2. EDF (U) 220V AC; 3. Tl (1”) Voltage step-up transformer; 4. C (2) 3-position switch; 5. VFD (3) Frequency Converter 55Kw AC 380V three-phase; 6. Mt (4) permanent magnet motor 45Kw AC 380V three-phase 75hz 1500 rpm; 7. 4 Synchronous Generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8) with permanent magnet 30Kw AC 380V three-phase 50Hz 1500 rpm; 8. AFVR (5) Voltage regulator 30Kw AC 380V three-phase 50Hz; 9. Main distribution board (11); a. 66kva UPS; b. 30kw domestic power supply; c. 20kw grid injection; d. T2 Step-down transformer (12); COMPOSITION OF THE DEVICE: In the order of startup, the Device is composed as follows: 1) 1 UPS (1) online double conversion 66kva AC 380V three-phase 50Hz IN & OUT for stand-alone start-up; 2) EDF (U) Option to start from the public electricity network, without UPS; 3) Tl (1”) Voltage step-up transformer; 4) 1 3-position switch C (2); 5) 1 VFD frequency inverter (3) 55Kw 380V three-phase; 6) 1 Mt (4) permanent magnet synchronous motor 45Kw 380V three-phase 1500 rpm, double shaft (b); 7) 4 Permanent magnet synchronous generators 30kW 380V 1500 rpm, Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8), equipped with the following shaft rotors: • Gtl (5) with double shaft (d); • Gt3 (6) with double shaft (d'); • GT2 and GT4 single shaft (d”); 8) 1 Parallel power connector A (9); 9) 1 AVFR (10) Regulator; 10) 1 TGBT (11) Main Low Voltage Switchboard or Low Voltage Electrical Cabinet; ASSEMBLY: WITH UPS (1): 1) The UPS (1) online double conversion is connected to the VFD drive (3); 2) The VFD drive (3) is connected to the Mt motor (4); 3) The Mt Motor (4) is coupled on the left to the Gtl Generator (5); 4) The Mt (4) Motor is coupled on the right to the Gt2 (6) Generator; 5) The Gtl Generator (5) is coupled on the left to the Gt4 Generator (8); 6) The Gt2 Generator (6) is coupled on the right to the Gt3 Generator (7); 7) The cables of each Generator are connected in parallel to Connector A (9); 8) Connector A (9) is connected to the AVFR Regulator (10); 9) The AVFR Regulator (10) is connected to the low voltage distribution board TGBT (11); WITHOUT UPS: 1) EDF (U) is connected to the Tl (1”) Voltage step-up transformer; 2) The Tl (1”) Voltage step-up transformer is connected to the 3-position switch C (2); 3) The 3-position Switch C (2) is connected to the VFD Drive (3); 2) The VFD drive (3) is connected to the Mt motor (4); 3) The Mt Motor (4) is coupled on the left to the Gtl Generator (5); 4) The Mt (4) Motor is coupled on the right to the Gt2 (6) Generator; 5) The Gtl Generator (5) is coupled on the left to the Gt4 Generator (8); 6) The Gt2 Generator (6) is coupled on the right to the Gt3 Generator (7); 7) The cables of each Generator are connected in parallel to Connector (A); 8) Connector A (9) is connected to the AVFR Regulator (10); 9) The AVFR Regulator (10) is connected to the low voltage distribution board TGBT (11) ELECTRICAL CIRCUIT: On each side of the double shaft of Motor Mt (4), each coupled generator generates 30kW. Connected in parallel on connector A, the total power produced is 120kW, and fed back into the circuit as follows: 1) The Gtl Generator (5) generates 30Kw of electricity connected in parallel to the power connector A (9); 2) The Gt4 Generator (8) generates 30Kw of electricity connected in parallel to the power connector A (9); 3) The Gt2 Generator (6) generates 30Kw of electricity connected in parallel to the power connector A (9); 4) The Gt3 Generator (7) generates 30Kw of electricity connected in parallel to the power connector A (9); 5) Connector A (9) is connected to the AVFR Regulator (10) and receives 120kW generated together by the 4 Generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8); 6) The AVFR Regulator (10) is connected to the TGBT (11) for the distribution of the 120Kw; 7) The General Low Voltage Switchboard (11) distributes the 120kW according to the following two distribution options: • WITH UPS (1) for example - 66kva UPS connected to the VFD frequency inverter (3); - Domestic 30kW; - Injection into the urban network 20kW; • WITHOUT UPS (for example) - Switch C (2) 55Kw connected to the VFD frequency inverter (3); - Domestic 30kW; - Injection into the urban network 35Kw;
[0015] GENERAL OPERATION OF THE DEVICE: Two options for starting the Device: In the absence of the UPS (1), the start-up can be initiated by electrical injection for 30 seconds, from the EDF public electricity network (U); The UPS (1) online double conversion ensures total operating autonomy of the Device which is started by switching on the UPS (1); The online double-conversion UPS (1) includes: a Rectifier; a set of Batteries (14); an Inverter (15); Back-UPS switch; Thus, the general operation of the device is derived from [Fig.1] and consists, with pre-charged batteries, of switching on the Back-UPS inverter, according to the following steps: 001. Press the POWER ON button located on the top of the Back-UPS, and act in accordance with the UPS safety and power-up instructions (1); 002. The Batteries (14) supply the DC 12V or 24V, 48V... current to the Inverter (15); 003. The Inverter (15) converts the received DC 12V or 24V, 48V ... direct current into AC 380V three-phase; 004. The Inverter (15) injects AC 380V three-phase into the VFD frequency converter (3); According to the settings of the VFD frequency inverter (3) 55Kw AC 380V three-phase electricity supplies the Motor Mt (4), and initiates the rotation of the Rotor of the Motor Mt (4); The rotation of the rotor of the Motor Mt (4) causes the rotation of the shaft (b) on which are fixed the 4 Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8); 005. The rotation of the rotor in the stator of each Generator generates a magnetic field which produces 30kw of electricity for each Generator thus connected; 006. The outputs of the 4 Generators are connected together in parallel on Connector A, and together total 120Kw; 007. The total quantity of electricity of 120kW thus produced by the 4 Generators is injected into the AVFR Regulator (10); 008. The low voltage distribution board TGBT (11), connected to the AVFR Regulator (10), distributes the 120kW of electricity between the different uses, and reinjects the surplus into the EDF network (1), as follows: • With UPS (1) - Domestic use: 30kW - UPS (1): 66kW - EDF (l'): 20kW • With switch (2), without UPS (1) - Domestic use: 30kW - VFD (3): 55kW - EDF (l'): 35kW 009. The closed self-supply circuit loop of the Device is realized at the level of the self-injection into the UPS (1) or into the Switch (2), connected to the VFD Drive (3) which supplies the Motor Mt (4). Thus, the Device maintains a permanent, closed-circuit, and unlimited production of electricity.
[0016] CONDITIONS OF RELIABILITY AND PROPER FUNCTIONING Besides the relevance of assembling the equipment necessary for the permanent production of electricity without external input, the reliability of the Device also relies on four fundamental principles: compatibility between components, synchronization of Generators, power control, cooling, and regular maintenance. 001. COMPATIBILITY AND TECHNICAL CONSTRAINTS The different elements must be compatible with each other, as well as in value, while paying particular attention to technical aspects as follows: 1. Synchronous motor Mt (4) & Synchronous generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8); 2. Voltage: AC 380V three-phase; 3. Frequency: 75Hz; 4. Power of the synchronous motor Mt (4): 45Kw under VFD control (3) 55Kw; 5. Perfect coupling of the generators on the shaft (b) of the motor; 6. Synchronization: Motor (4) and Synchronous Generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8); 7. Generator power: 30kW; the other parameters in table [Table] are derived from this. 8. Overheating: ventilation and temperature-controlled cold room; 9. Regular maintenance; 10. Inspection of electrical connections; 11. Lubrication of mechanical components; 002. PRODUCTION CAPACITY The diagram Fig.1 shows the production of 120Kw of electricity, from 4 permanent magnet synchronous generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8) producing 30Kw per unit, and a permanent magnet synchronous motor (4) of 45Kw. [Fig.3] By extrapolation, it is possible to increase the power of electricity produced to the highest levels, according to the needs expressed, by duplicating this Device into several modules put in parallel, as many times as necessary to make them into power plants, as well as by interconnecting these different electricity production modules.
[0017] ADAPTABILITY This device could be adapted to supply electricity to all types of uses, including power plants, vehicles of all kinds, ships, aeronautical and space vehicles of all kinds, having a permanent and inexhaustible source of energy without storage. Thus, from an environmental point of view, this device presents enormous advantages compared to all types of energy production, solar, wind, hydroelectric dam, nuclear, thermal etc. This presentation will need to be performed during the assembly of the prototypes, with the necessary adjustments and improvements. This compact device can be installed anywhere, underground, underwater, in space, provided that suitable premises are prepared for the appropriate installations. The equipment used, particularly the permanent magnet motors and generators, is generally quite robust, capable of operating 24 / 7 / 365 without interruption for over 20 years, according to the manufacturers. Naturally, despite this guarantee, the installations will be under constant monitoring and will undergo regular maintenance to ensure optimal reliability and durability.
Claims
[0018] Claims
1. A free, permanent, unlimited power, closed-circuit, looped electricity generation system represented by the diagram [Fig. 1], comprising:
001. A central part consisting of a permanent magnet synchronous electric motor (4), having a transverse shaft (b) on which are coupled a series of permanent magnet synchronous generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8), the rotation of whose rotor (b) also drives the rotation of those of the generators (d), (d') and (d”).
002. Additional elements enabling the proper functioning of the permanent electricity production system, consisting of equipment assembly and connections, composed of: an optional double conversion online UPS (1); a VFD frequency inverter (3); an AFVR voltage regulator (10); supplemented by TGBT accessories (11), step-up transformers T1 (1”) and step-down transformers T2 (12);
2. Process of compensating energy losses and annihilating the law of conservation of energy, due to an excess power production of the Generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8) compared to the energy source of the Motor (4) which drives them;
3. A method for generating free, permanent, and unlimited power electricity, consisting of the self-supply of an electric motor (4), driving generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8) coupled to the transverse shaft of the motor (4), the electricity generated from which is reinjected into said electric motor (4), in a closed circuit, and in a loop, after being energized by the UPS switch (1), or by a brief connection to the network, and comprising the following different steps:
001. Step 1, the start-up aimed at initiating the rotation of the Motor (4) from the power-up (16) of the UPS (1) online double conversion, whose AC 380V output alternating current is connected to the VFD frequency converter (3) AC 380V three-phase to supply the motor (4); Step IBis, possibly the power-up by a brief connection to the network could require a step-up transformer Tl (1”) before connection to the VFD drive (3); 002. Step 2, the VFD drive (3), connected to the motor (4), triggers the rotation of the rotor (b) of the electric motor (4); 003. Step 3, the Rotors (d), (d') and (d”) of the Generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8), coupled to the Rotor (b) of the Motor (4), are driven in a rotational movement at the same speed as the Motor (4); 004. Step 4, the rotation of the Rotors (d), (d') and (d”) of the Generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8) inside the Stators generates the electricity produced by the magnetic field; 005. Step 5, the connector (A) combines in parallel all the electricity production of the Generators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8) AC 380V three-phase, and injects it into the AFVR Regulator (10); 006. Step 5, the TGBT distribution board (11) connected to the AFVR Regulator (10), reinjects the necessary amount of electricity into the VFD Variator (3), and distributes the electricity to the various destinations, and possibly reinjects the surplus of electricity production onto the EDF public network (F); 007. Step 7, the VFD (3) injects the required amount of electricity back into the Motor (4); Thus, electricity is produced in a closed circuit from the reinjection of the current generated by the Alternators Gtl (5), Gt2 (6), Gt3 (7), Gt4 (8) into the Variator (3) in permanent loop, according to the required quantity. Note that all these steps occur simultaneously, from the start by the switch (16) of the UPS (1) or the brief power-up from the EDF public network;
4. Customization and grouping of interconnected devices, integrated into a single block, allowing the connection of the Motor (4) and the Generators, according to the diagram [Fig.3], including in particular: - A double conversion online UPS, consisting of a switch (16), a rectifier (13), batteries (14) and an inverter (15); - A VFD frequency converter (3); - An AFVR Stabilizer Regulator (10);
5. System for unlimited expansion of the capacity and power of the entire device by parallel mounting of the electrical power generator modules [Fig. 4]; and for increasing the power of the UPS by parallel rack mounting
6. Electric vehicle Fig.5 comprising an unlimited electricity generation system according to claim 1 and a method according to claims 2 and 3 for the operation of said system, adapted to the mechanical arrangements.
7. Application of the device to all situations requiring the autonomous production or supply of electricity, including: Power plants, homes, isolated sites, vehicles of all kinds, civil, military and space vehicles...
7. Application of the device to all situations requiring the autonomous production or supply of electricity, including: Electric power generation plants, dwellings, isolated sites, vehicles of all kinds, civil, military and space vehicles...