WO2017152295A1 - Self-sustaining unit for generating electrical energy - Google Patents

Self-sustaining unit for generating electrical energy Download PDF

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Publication number
WO2017152295A1
WO2017152295A1 PCT/CL2016/000011 CL2016000011W WO2017152295A1 WO 2017152295 A1 WO2017152295 A1 WO 2017152295A1 CL 2016000011 W CL2016000011 W CL 2016000011W WO 2017152295 A1 WO2017152295 A1 WO 2017152295A1
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WO
WIPO (PCT)
Prior art keywords
generating unit
self
pulley
sustaining
power generating
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PCT/CL2016/000011
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Spanish (es)
French (fr)
Inventor
John LOPEZ GARRIDO
Guillermo GUIM CHANG
Original Assignee
Lopez Garrido John
Guim Chang Guillermo
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Application filed by Lopez Garrido John, Guim Chang Guillermo filed Critical Lopez Garrido John
Priority to PCT/CL2016/000011 priority Critical patent/WO2017152295A1/en
Publication of WO2017152295A1 publication Critical patent/WO2017152295A1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03GSPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
    • F03G7/00Mechanical-power-producing mechanisms, not otherwise provided for or using energy sources not otherwise provided for
    • F03G7/10Alleged perpetua mobilia

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)

Abstract

The invention relates to a self-sustaining unit for generating electrical energy, which produces electricity at 0% consumption cost. The unit is formed by a structural support (2) of the electric generator unit (1) and comprises at least one electric drive motor (3). The electric generator unit (1) is characterised in that, for the initial and continuous operation thereof, it extracts energy for the drive motor (3) from a first bank (4) of 12 V deep-cycle batteries, the motor being internally connected to a reducer (5) by means of a lower longitudinal shaft (6). The shaft is in turn supported by a housed, rigid ball bearing (7) and is coupled at the output end (8) to a dynamic pulley (9) that transmits movement by means of a belt (10). The belt is connected to a second independent upper longitudinal shaft (11) by means of a second smaller upper pulley (12), the independent upper longitudinal shaft (11) being supported by two rigid ball bearings (13) and coupled at the centre to a flywheel (14). The flywheel transmits movement by means of the longitudinal shaft thereof (11) to a second dynamic pulley (15), similar to the smaller upper pulley (12), by means of a belt (16), and the second dynamic pulley transmits movement to a smaller lower pulley (17) connected to an alternator (18) having neodymium permanent magnets. The alternator delivers recharge energy to a second bank (19) of 12 V deep-cycle batteries that, in turn, power a voltage inverter (20), an electric control panel (21), a variable-frequency drive (22) and an electronic development card (23).

Description

MEMORIA DESCRIPTIVA  DESCRIPTIVE MEMORY
TITULO: "UNIDAD GENERADORA DE ENERGÍA ELÉCTRICA AUTOSUSTENTABLE" TITLE: "SELF-SUSTAINABLE ELECTRICAL POWER GENERATOR UNIT"
Unidad generadora de energía eléctrica autosustentable, provista de medios para generar o producir energía eléctrica, más específicamente, el generador autosustentable, está conformado con medios, capaces de generar energía eléctrica sin necesidad de utilizar ningún tipo de combustibles ni recursos naturales, para su alimentación y funcionamiento. Self-sustaining electric power generating unit, provided with means to generate or produce electric power, more specifically, the self-sustaining generator, is made up of means, capable of generating electric power without using any type of fuel or natural resources, for food and functioning.
En lo que se refiere a producir energía eléctrica, podemos citar la patente ES1069312, la que se refiere a un aparato con energía cinética, accionada, renovable caracterizado por estar formado por una estructura soporte(1) que sirve de sustentación al eje (2) de giro horizontal de un cilindro (3), cuya mitad interna superior (4) está ocupada por un cuerpo pesado y su mitad interna inferior (5) está vacía o con aire, de forma que el cilindro permanece parado en situación de equilibrio y "accionado", solamente apoyado en el freno-arranque (6). El cilindro (3) dispone en su periferia circular de un canal (7) que sirva para contener una cadena correa o cinta (8) transportadora del movimiento circular del cilindro a un piñón, polea (9) que recibe la energía cinética o giro del cilindro (3) y pueda transmitirla a un generador eléctrico (10) o a otro cualquier aparato. Otra patente de invención es la ES 472956, la que se refiere a unmecanismo transmisor de energía cinética, caracterizado por el hecho de que el árbol vinculado temporalmente y a voluntad al aparato o máquina a accionar, está provisto de un pletina soporte del conjunto transmisor, cual pletina está un ida en forma de quita y pon, a voluntad , al escudo del motor eléctrico, de explosión o de compresión , según sea, cual pletina soporte es portadora de todo el mecanismo formado por el árbol antes mencionado, un segundo árbol perpendicular al árbol soporte, cual segundo árbol está vinculado al primero por medio de un piñón de ataque, dos ruedas angulares que están vinculadas a dos partes de embrague vinculados temporalmente y a voluntad al eje n el cual segundo eje prolongación en línea , interrumpida o no, se dispone el volante magnético que conjuntamente con el rotor también montado en la prolongación del propio segundo eje, interrumpida o no , producen la energía necesaria en forma de fluido eléctrico para alimentar de energía eléctrica los embragues y la bobina eléctrica del mecanismo electro freno emplazado en un extremo del árbol soporte. With regard to producing electrical energy, we can cite the patent ES1069312, which refers to an apparatus with kinetic, powered, renewable energy characterized by being formed by a support structure (1) that supports the shaft (2) of horizontal rotation of a cylinder (3), whose upper inner half (4) is occupied by a heavy body and its lower inner half (5) is empty or airy, so that the cylinder remains in equilibrium and " operated ", only supported by the brake-starter (6). The cylinder (3) has on its circular periphery a channel (7) that serves to contain a belt chain or belt (8) transporting the circular movement of the cylinder to a pinion, pulley (9) that receives the kinetic energy or rotation of the cylinder (3) and can transmit it to an electric generator (10) or to any other device. Another patent of invention is ES 472956, which refers to a kinetic energy transmitting mechanism, characterized by the fact that the tree temporarily linked and at will to the apparatus or machine to be operated, is provided with a support plate of the transmitter assembly, which plate is one way in the form of removable and put, at will, to the shield of the electric motor, explosion or compression, depending on, which support plate is carrier of the whole mechanism formed by the aforementioned tree, a second tree perpendicular to the support tree, which second tree is linked to the first by means of an attack pinion, two angular wheels that are linked to two clutch parts temporarily linked and at will to the axis n which second line extension shaft, interrupted or not, the magnetic flywheel is arranged which together with the rotor also mounted in the extension of the second axis itself, interrupted or not, produce the necessary energy in the form of electric fluid to feed the clutches and the electric coil of the electro mechanism brake located at one end of the support shaft.
Otra patente es la solicitud PCT/ES2005/000467, la que se refiere a un equipo o dispositivo destinado a la generación de energ ía cinética debido al movimiento de rotación producido por el enfriamiento de campos magnéticos y su posterior aprovechamiento o transformación en corriente eléctrica, que denominamos Generador de Energ ía Cinética de alto rendimiento y que consiste en : Another patent is application PCT / ES2005 / 000467, which refers to a device or device intended for the generation of kinetic energy due to the rotational movement produced by the cooling of magnetic fields and their subsequent use or transformation into electric current, We call high-performance Kinetic Energy Generator and it consists of:
• El Grupo Motor • The Motor Group
• El Grupo Transportador  • The Transport Group
• El Grupo Generador de Corriente Eléctrica o Alternador  • The Electricity Generator or Alternator Group
• El Sistema de Control  • The Control System
Las ventaj as de la u n id ad gene radora de energ ía eléctrica electri cid ad de l a inve n ción , so n l as s ig u ie ntes : ❖ Es retroalimentado y autosustentable en un 100%.The advantages of the electric power generator of the invention are only as follows: ❖ It is 100% self-sustaining and self-sustaining.
❖ No requiere de ningún tipo de combustibles ni recursos naturales. ❖ Does not require any type of fuel or natural resources.
❖ No tiene contaminación acústica ni de polución. ❖ No consume energías naturales.  ❖ It has no noise or pollution pollution. ❖ Does not consume natural energy.
❖ No conecta al servicio interconectado central, siendo 100% autónomo.  ❖ Does not connect to the central interconnected service, being 100% autonomous.
❖ Costo energético 0%.  ❖ Energy cost 0%.
❖ Puede operar en cualquier zona geográfica, incluso en forma subterránea y es transportable.  ❖ It can operate in any geographical area, even underground and is transportable.
❖ Mínimo costos de mantención.  ❖ Minimum maintenance costs.
El objetivo de la invención, es producir corriente eléctrica de uso domestico e industrial, sin la utilización de combustibles ni energías de recursos naturales, usando para ello la retroalimentación como fuente de abastecimiento. The objective of the invention is to produce electric current for domestic and industrial use, without the use of fuels or natural resources energies, using feedback as a source of supply.
Breve descripción de las figuras Brief description of the figures
Para comprender mejor la invención, para la unidad generadora de electricidad autosustentable, la describiremos en base a las figuras que forman parte integral de está invención, sin que ello signifique restringirla a modificaciones obvia, que pudiesen surgir, en donde: To better understand the invention, for the self-sustaining electricity generating unit, we will describe it based on the figures that are an integral part of this invention, without this meaning restricting it to obvious modifications, which could arise, where:
La figura 1, muestra una perspectiva de la unidad generadora de energía eléctrica autosustentable, de la invención. La figura 2, muestra una vista en planta superior, de la unidad generadora de energía eléctrica autosustentable, de la invención. La figura 3 muestra una vista en elevación lateral izquierda, de la unidad generadora de energía eléctrica autosustentable, de la invención. Figure 1 shows a perspective of the self-sustaining electric power generating unit of the invention. Figure 2 shows a top plan view of the self-sustaining electric power generating unit of the invention. Figure 3 shows a left side elevation view of the self-sustaining electric power generating unit of the invention.
La figura 4 muestra una vista en elevación posterior, de la unidad generadora de energía eléctrica autosustentable, de la invención. Figure 4 shows a rear elevation view of the self-sustaining electric power generating unit of the invention.
La figura 5 muestra una vista en elevación lateral derecha, de la unidad generadora de energía eléctrica, autosustentable de la invención. La figura 6 muestra una vista en elevación frontal, de la unidad generadora de energía eléctrica autosustentable, de la invención. Figure 5 shows a right side elevation view of the self-sustaining electric power generating unit of the invention. Figure 6 shows a front elevation view of the self-sustaining electric power generating unit of the invention.
La figura 7 muestra una vista en perspectiva del lado izquierdo, de la unidad generadora de energía eléctrica autosustentable, de la invención. Figure 7 shows a perspective view of the left side of the self-sustaining electric power generating unit of the invention.
La figura 8 muestra una vista de elevación frontal del tablero de control eléctrico, de la unidad generadora eléctrica autosustentable, de la invención. Figure 8 shows a front elevation view of the electrical control panel, of the self-sustaining electric generating unit, of the invention.
Descripción de la Invención De acuerdo a las figuras 1 a 8, la invención para la unidad generadora de energía eléctrica autosustentable (1), está conformada por un soporte estructural (2), el que contiene dicha unidad generadora de energía eléctrica autosustentable (1), constituida al menos de un motor eléctrico motriz (3), el cual extrae energías, de un primer banco de baterías de ciclo profundo de 12v (4), para su funcionamiento inicial y permanente de dicha unidad generadora de energía eléctrica (1), este motor motriz (3), está conectado de forma interna a un reductor (5), mediante un eje longitudinal inferior (6), el que a su vez es soportado por un rodamiento de bolas rígidas de descanso (7), en su extremo de salida (8), va acoplado a una polea dinámica (9), la que transmite movimiento mediante una correa (10), la cual está conectada a otro eje longitudinal superior independiente (11), mediante otra polea superior menor (12), donde el eje longitudinal superior independiente (11), el que es soportado por dos rodamientos rígidos de bolas (13), y en la zona central, se acopla a su vez, a un volante de energía (14), el cual transmite movimiento a otra polea dinámica extrema (15) similar a la polea (12), a través, de una correa (16) y ésta a una polea inferior (17); la que está incorporada a un alternador de imanes permanentes de neodimio (18), el cual entrega energía a un segundo banco de baterías de ciclo profundo de 12v (19), las que a su vez: alimentan a un inversor de voltaje (20), a un tablero de control eléctrico (21), a un variador de frecuencia (22) y a una tarjeta de desarrollo electrónico (23). Description of the Invention According to Figures 1 to 8, the invention for the self-sustaining electric power generating unit (1) is formed by a structural support (2), which contains said self-sustaining electric power generating unit (1) , constituted at least of a motor electric motor (3), which draws energy, from a first bank of 12v deep cycle batteries (4), for its initial and permanent operation of said electric power generating unit (1), this drive motor (3), is internally connected to a reducer (5), by means of a lower longitudinal axis (6), which in turn is supported by a deep groove ball bearing (7), at its outlet end (8), it is coupled to a dynamic pulley (9), which transmits movement through a belt (10), which is connected to another longitudinal axis independent upper (11), by another lower upper pulley (12), where the independent upper longitudinal axis (11), which is supported by two deep groove ball bearings (13), and in the central area, is coupled in turn , to an energy flywheel (14), which transmits movement to another extreme dynamic pulley (15) similar to the pulley (12), through a belt (16) and this to a lower pulley (17); which is incorporated into a permanent neodymium magnet alternator (18), which delivers power to a second 12v deep cycle battery bank (19), which in turn: feeds a voltage inverter (20) , to an electrical control board (21), to a frequency inverter (22) and to an electronic development card (23).
El tablero de control (21), está conformado por dicha tarjeta de desarrollo de control electrónico (23), que monitorea y controla las funciones de la unidad generadora de electricidad autosustentable (1); un inversor de voltaje (20), el que se encarga de transformar la energía de corriente continua a corriente alterna y es controlado por dicha tarjeta de desarrollo electrónico (23), la que recibe información de los instrumentos de medición, dispuestos en el tablero de control eléctrico (21), de esta unidad generadora de energía eléctrica autosustentable (1), que son los siguientes: un voltímetro DC (corriente directa) (24), un segundo voltímetro (25), AC (corriente alterna), los que miden el voltaje de salida; un medidor de ciclos (26), para medir la frecuencia- corriente alterna de salida; un amperímetro (27), el que mide la intensidad de la corriente eléctrica de salida; el variador de frecuencia (22), el que controla la velocidad de rotación del motor motriz (3), una luz piloto de recarga (28), para control del segundo banco de baterías (19) de la unidad generadora eléctrica (1); un breaker o automático de protección humana (29), en caso de corto circuito; y finalmente unas celosías de ventilación (30). Además el tablero de control eléctrico (21), cuenta con un sistema interconectado de cableado eléctrico (21a), que va conectado con dichos instrumentos de medición, para el funcionamiento y control de dicha unidad generadora de electricidad autosustentable (1). The control board (21) is made up of said electronic control development card (23), which monitors and controls the functions of the self-sustaining electricity generating unit (1); a voltage inverter (20), which is responsible for transforming the energy from direct current to alternating current and is controlled by said electronic development card (23), which receives information from the measuring instruments, arranged on the control board. electrical control (21), of this self-sustaining electric power generating unit (1), which are the following: a DC voltmeter (direct current) (24), a second voltmeter (25), AC (alternating current), which measure the output voltage; a cycle meter (26), to measure the frequency - alternating current of output; an ammeter (27), which measures the intensity of the electrical output current; the frequency inverter (22), which controls the speed of rotation of the motor motor (3), a pilot recharge light (28), for control of the second battery bank (19) of the electric generating unit (1); a breaker or automatic human protection (29), in case of short circuit; and finally some ventilation lattices (30). In addition, the electrical control panel (21) has an interconnected electrical wiring system (21a), which is connected with said measuring instruments, for the operation and control of said self-sustaining electricity generating unit (1).
Para mantener la temperatura óptima interior de la unidad generadora de electricidad (1), contiene las celosías de ventilación (30), que están en la zona frontal y posterior de las cubiertas o paredes (31), de la unidad generadora de electricidad autosustentable (1), las que presentan en sus paredes interiores un aislante acústico (32). To maintain the optimum internal temperature of the electricity generating unit (1), it contains the ventilation lattices (30), which are in the front and rear area of the roofs or walls (31), of the self-sustaining electricity generating unit ( 1), which have an acoustic insulator on their interior walls (32).
Para el funcionamiento inicial y permanente, de la unidad generadora de energía eléctrica autosustentable (1), el primer banco de baterías (4), con una carga al 100% en su reserva, alimenta conjuntamente al motor eléctrico (3) y al inversor de voltaje (20), este motor eléctrico (3) y este inversor (20) encienden de dos modos: a) En forma manual, a través, de un variador de frecuencia (22) y b) En forma automática, por consumo desde el inversor de voltaje (20), el cual ya alimentado de energía, hace girar al motor (3) y reductor de régimen de giro (5), mediante el eje longitudinal inferior (8), el que permite transmitir el movimiento giratorio, a la polea dinámica (9), (a través de la primera correa (10), la cual se acopla a una segunda polea superior (12), de menor diámetro y ésta se encuentra acoplada a otro eje longitudinal superior (11), donde también se acopla al volante de inercia (14), y que en el extremo de dicho eje longitudinal superior (11), se acopla una tercera polea (15), similar a la polea (12), que a su vez acciona la segunda correa (16), transmitiendo movimiento rotatorio a otra polea inferior (17), la que está incorporada al alternador de neodimio de imanes permanentes de 12v (18), el cual suministra recarga para el segundo banco de baterías en reserva (19), las cuales estas entran en funcionamiento a través de un cambio provocado por un relé interno, que posee la tarjeta de desarrollo electrónico (23); cuando la descarga del primer banco de baterías (4) llega a un 80% de descarga, debido a su continuo proceso de trabajo de la unidad generadora eléctrica (1), provocando así un ininterrumpido y continuo proceso de funcionamiento y entrega de energía DC al inversor de voltaje (20), el que se encarga de suministrar 220 volt AC al consumo, ya sea doméstico o industrial. For the initial and permanent operation of the self-sustaining electric power generating unit (1), the first battery bank (4), with a 100% charge in its reserve, feeds together the electric motor (3) and the inverter of voltage (20), this electric motor (3) and this inverter (20) start in two ways: a) Manually, through a frequency inverter (22) and b) Automatically, due to consumption from the voltage inverter (20), which already powered by energy, rotates the motor (3) and reducer of speed of rotation (5), by means of the longitudinal axis inferior (8), the one that allows to transmit the rotary movement, to the dynamic pulley (9), (through the first belt (10), which is coupled to a second upper pulley (12), of smaller diameter and this one is coupled to another upper longitudinal axis (11), where it is also coupled to the flywheel (14), and which at the end of said upper longitudinal axis (11), a third pulley (15) is attached, similar to the pulley (12), which in turn drives the second belt (16), transmitting rotary motion to another lower pulley (17), which is incorporated into the neodymium magnet alternator 12v permanent (18), which supplies recharge for the second battery bank in reserve (19), which enters n in operation through a change caused by an internal relay, which has the electronic development card (23); when the discharge of the first battery bank (4) reaches an 80% discharge, due to its continuous work process of the electric generating unit (1), thus causing an uninterrupted and continuous process of operation and delivery of DC power to the voltage inverter (20), which is responsible for supplying 220 volt AC to consumption, whether domestic or industrial.
El inversor de voltaje (20), se encarga de transformar la corriente de 12v DC en 220volt AC. Toda la unidad generadora de energía eléctrica (1), es monitoreada y controlada por la tarjeta de desarrollo electrónico (23),la que tiene acceso por un puerto USB (33) a una PC externo (no ilustrado). The voltage inverter (20), is responsible for transforming the 12v DC current into 220volt AC. The entire electric power generating unit (1) is monitored and controlled by the electronic development card (23), which has access via a USB port (33) to an external PC (not shown).

Claims

REIVINDICACIONES
1.- Unidad generadora de energía eléctrica autosustentable, que produce electricidad a 0% de costo de consumo, está conformada por un soporte estructural (2), de la unidad generadora eléctrica (1), está constituida al menos de un motor eléctrico motriz (3), CARACTERIZADA porque para su funcionamiento inicial y permanente de dicha unidad generadora electricidad (1), extrae energías, de un primer banco de baterías de ciclo profundo de 12v (4), para el motor motriz (3), el que está conectado de forma interna a un reductor (5), mediante un eje longitudinal inferior (6), el que a su vez es soportado por un rodamiento de bolas rígidas de descanso (7), en su extremo de salida (8), va acoplado a una polea dinámica (9), la que transmite movimiento mediante una correa (10), la cual está conectada a otro eje longitudinal superior independiente (11), mediante otra polea superior menor (12), donde el eje longitudinal superior independiente (11), el que es soportado por dos rodamientos rígidos de bolas (13), y en la zona central, se acopla a su vez, a un volante de energía (14), el cual transmite movimiento a través de su eje longitudinal (11) a otra polea dinámica (15) similar a la polea superior menor (12), a través, de una correa (16) y ésta a una polea inferior menor (17); la que va conectada a un alternador de imanes permanentes de neodimio (18), el cual entrega energía de recarga a un segundo banco de baterías de ciclo profundo de 12v (19), las que a su vez: alimentan a un inversor de voltaje (20), a un tablero de control eléctrico (21), a un variador de frecuencia (22) y a una tarjeta de desarrollo electrónico (23). 1.- Self-sustaining electric power generating unit, which produces electricity at 0% of consumption cost, is made up of a structural support (2), of the electric generating unit (1), is constituted at least of a motor electric motor ( 3), CHARACTERIZED because for its initial and permanent operation of said electricity generating unit (1), it extracts energies, from a first 12v deep cycle battery bank (4), for the drive motor (3), which is connected internally to a reducer (5), by means of a lower longitudinal axis (6), which in turn is supported by a deep groove ball bearing (7), at its outlet end (8), is coupled to a dynamic pulley (9), which transmits movement by means of a belt (10), which is connected to another independent upper longitudinal axis (11), by another smaller upper pulley (12), where the independent upper longitudinal axis (11) , which is supported by two bearings r Iighed with balls (13), and in the central area, it is coupled, in turn, to an energy flywheel (14), which transmits movement through its longitudinal axis (11) to another dynamic pulley (15) similar to the minor upper pulley (12), through a belt (16) and this to a smaller lower pulley (17); which is connected to a permanent magnet neodymium alternator (18), which delivers recharge power to a second bank of 12v deep cycle batteries (19), which in turn: feed a voltage inverter ( 20), an electrical control board (21), a frequency inverter (22) and an electronic development card (23).
2 - Unidad generadora de energía eléctrica autosustentable, según la reivindicación 1, CARACTERIZADA porque el tablero de control eléctrico (21), está conformado por dicha tarjeta de desarrollo de control electrónico (23), que monitorea y controla las funciones de la unidad generadora de electricidad (1); un inversor de voltaje (20), el que se encarga de transformar la energía de corriente continua a corriente alterna y es controlado por dicha tarjeta de desarrollo electrónico (23), la que recibe información de los instrumentos de medición, dispuestos en el tablero de control eléctrico (21), de esta unidad generadora de energía eléctrica autosustentable ( ). 2 - Self-sustaining electric power generating unit, according to claim 1, CHARACTERIZED in that the electric control board (21) is made up of said electronic control development card (23), which monitors and controls the functions of the power generating unit. electricity (1); a voltage inverter (20), which is responsible for transforming the energy from direct current to alternating current and is controlled by said electronic development card (23), which receives information from the measuring instruments, arranged on the control board. electrical control (21), of this self-sustaining electric power generating unit ().
3.- Unidad generadora de energía eléctrica autosustentable, según la reivindicación 1, CARACTERIZADA porque los instrumentos de medición son los siguientes: un voltímetro DC (corriente directa) (24), un segundo voltímetro AC (corriente alterna) (25), los que miden el voltaje de salida; un medidor de ciclos (26), para medir la frecuencia-corriente alterna de salida; un amperímetro (27), el que mide la intensidad de la corriente eléctrica de salida; un variador de frecuencia (22) que controla la velocidad de rotación del motor motriz (3), una luz piloto de recarga (28), para control del segundo banco de baterías (19) de la unidad generadora eléctrica (1); un fusible o automático de protección humana ( 29), en caso de corto circuito; y finalmente unas celosías de ventilación (28). 3. Self-sustaining electric power generating unit according to claim 1, CHARACTERIZED because the measuring instruments are the following: a DC voltmeter (direct current) (24), a second AC voltmeter (alternating current) (25), which measure the output voltage; a cycle meter (26), to measure the output alternating current-frequency; an ammeter (27), which measures the intensity of the electrical output current; a frequency inverter (22) that controls the speed of rotation of the motor motor (3), a pilot recharge light (28), for control of the second battery bank (19) of the electric generating unit (1); a fuse or automatic human protection (29), in case of short circuit; and finally some ventilation lattices (28).
4.- Unidad generadora de energía eléctrica autosustentable, según las reivindicaciones 1, 2 y 3, CARACTERIZADA porque él tablero (21), cuenta con un sistema interconectado de cableado eléctrico (21a), que va conectado con dichos instrumentos de medición, para el funcionamiento y control de dicha unidad generadora de electricidad autosustentable (1). 4. Self-sustaining electric power generating unit, according to claims 1, 2 and 3, CHARACTERIZED because the panel (21), has a interconnected electrical wiring system (21a), which is connected with said measuring instruments, for the operation and control of said self-sustaining electricity generating unit (1).
5.- Unidad generadora de energía eléctrica autosustentable, según la reivindicación 1, CARACTERIZADA porque para mantener la temperatura óptima interior de la unidad generadora de electricidad (1), contiene celosías (30), que están ubicadas en los extremos, frontal y posterior de unas cubiertas (31), las que presentan en sus paredes interiores un aislante acústico (32). 5. Self-sustaining electric power generating unit according to claim 1, CHARACTERIZED because to maintain the optimum internal temperature of the power generating unit (1), it contains lattices (30), which are located at the front, rear and rear ends of covers (31), which have an acoustic insulator (32) on their interior walls.
PCT/CL2016/000011 2016-03-11 2016-03-11 Self-sustaining unit for generating electrical energy WO2017152295A1 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2019100174A1 (en) * 2017-11-27 2019-05-31 GUIM CHANG, Guillermo Unit for generating electric energy using hydrogen gas or other fuels
US11300109B2 (en) * 2017-07-03 2022-04-12 Clean Powr Pty Ltd Apparatus for generating energy
WO2023203264A1 (en) * 2022-04-22 2023-10-26 Rodriguez Grana Pedro Device for generating electrical energy

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JPS60113074A (en) * 1983-11-24 1985-06-19 Yoshimatsu Wakabayashi Infinite energy device
KR20020004486A (en) * 2000-07-05 2002-01-16 박준봉 Apparatus for generating a power by using a pendulum movement
WO2010063861A1 (en) * 2008-12-01 2010-06-10 Santiago Arnes Carrasco Actuated cylindrical rotor
DE102013001944A1 (en) * 2013-02-04 2014-08-21 Martin Pohl Power production motor i.e. gravity motor for working machine, has neodymium permanent magnet conveyed from lower dead center into top dead center of rotor by small power, where rotor is equipped with neodymium permanent magnet on side
WO2015137851A2 (en) * 2014-03-10 2015-09-17 حمد المامي، Method of producing renewable electrical energy by gravity

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS60113074A (en) * 1983-11-24 1985-06-19 Yoshimatsu Wakabayashi Infinite energy device
KR20020004486A (en) * 2000-07-05 2002-01-16 박준봉 Apparatus for generating a power by using a pendulum movement
WO2010063861A1 (en) * 2008-12-01 2010-06-10 Santiago Arnes Carrasco Actuated cylindrical rotor
DE102013001944A1 (en) * 2013-02-04 2014-08-21 Martin Pohl Power production motor i.e. gravity motor for working machine, has neodymium permanent magnet conveyed from lower dead center into top dead center of rotor by small power, where rotor is equipped with neodymium permanent magnet on side
WO2015137851A2 (en) * 2014-03-10 2015-09-17 حمد المامي، Method of producing renewable electrical energy by gravity

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11300109B2 (en) * 2017-07-03 2022-04-12 Clean Powr Pty Ltd Apparatus for generating energy
WO2019100174A1 (en) * 2017-11-27 2019-05-31 GUIM CHANG, Guillermo Unit for generating electric energy using hydrogen gas or other fuels
WO2023203264A1 (en) * 2022-04-22 2023-10-26 Rodriguez Grana Pedro Device for generating electrical energy

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