EP3420784B1 - System zur steuerung der stromversorgung einer spannungsquelle für elektrozaun und verfahren zum betrieb solch eines systems - Google Patents

System zur steuerung der stromversorgung einer spannungsquelle für elektrozaun und verfahren zum betrieb solch eines systems Download PDF

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Publication number
EP3420784B1
EP3420784B1 EP17710330.6A EP17710330A EP3420784B1 EP 3420784 B1 EP3420784 B1 EP 3420784B1 EP 17710330 A EP17710330 A EP 17710330A EP 3420784 B1 EP3420784 B1 EP 3420784B1
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Prior art keywords
energizer
electronic
control unit
switch
electric fence
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English (en)
French (fr)
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EP3420784A1 (de
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Valéry Hamm
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Lacme Holding SA
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Lacme Holding SA
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05CELECTRIC CIRCUITS OR APPARATUS SPECIALLY DESIGNED FOR USE IN EQUIPMENT FOR KILLING, STUNNING, OR GUIDING LIVING BEINGS
    • H05C1/00Circuits or apparatus for generating electric shock effects
    • H05C1/04Circuits or apparatus for generating electric shock effects providing pulse voltages
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05CELECTRIC CIRCUITS OR APPARATUS SPECIALLY DESIGNED FOR USE IN EQUIPMENT FOR KILLING, STUNNING, OR GUIDING LIVING BEINGS
    • H05C3/00Other circuits or apparatus

Definitions

  • the invention relates to a method for controlling the power supply of an energizer for an electric fence and the control system on which it is based.
  • Such a system for controlling the electrical supply of an energizer for electric fencing comprises an electronic control box for electric fencing, intended to be connected between the energizer of the electric fence and its electrical supply, comprising an RF transmitting chip and receiver, and includes a pocket radio control for controlling the electronic control unit via the RF chip.
  • the electronic unit contains a switch controlling the electrical supply to the energizer, and actuates said switch by means of an electronic circuit receiving and transmitting RF signals from and to said pocket radio control, such as '' Smartphone or RF remote control.
  • a switch controlling the electrical supply to the energizer, and actuates said switch by means of an electronic circuit receiving and transmitting RF signals from and to said pocket radio control, such as '' Smartphone or RF remote control.
  • An electronic box intended to be connected between the energizer of the electric fence and its power supply, is usually called a nesting box.
  • the switch control signal is triggered by the user by means of a remote control placed in contact with the fence wire.
  • the signal from control is led by the closing wire to the pull-out box which acts on the switch.
  • the pull-out box has a chip for receiving RF signals.
  • the switch control signal is triggered by the user using an RF remote control or a mobile phone, and is transmitted to the nesting box over a private RF link or over the telephone network, respectively.
  • WO 2009/028 966 describes a set of command and control of an electric fence by means of RF signals to avoid the problems of electrical insulation between on the one hand the energizer, and on the other hand its command and control modules.
  • a control module addresses RF commands to the energizer
  • a control module placed on the electric fence but remote from the energizer, monitors the pulses and addresses RF signals to the control module.
  • the control module can be in RF relationship with a remote module such as a cell phone.
  • Various accessories of the electric fence, such as doors, can also be controlled by RF signals. This The document does not mention a nesting box between the power source and the energizer, and it describes the use of only RF signals.
  • WO 2008/020 166 describes an installation for monitoring animals each equipped with an RF transmitter.
  • RF receivers are fixed to electric fence posts and the signals received by these RF receivers are unequivocally transmitted to a fixed central station via the wire of the electric fence. This document does not mention a nesting box between the power source and the fence energizer.
  • One of the aims of the invention is to propose a system for controlling the electrical supply of an energizer for an electric fence, which does not have the drawbacks linked to the limits of the above-mentioned documents.
  • Another object of the invention is to propose a system for controlling the electrical supply of an energizer for an electric fence, the nesting box of which can be installed directly between the electrical supply and the energizer of an old fence.
  • Another object of the invention is to propose a system for controlling the electrical supply of an energizer for an electric fence which is controlled both by RF signals and by signals conducted by the fence wire.
  • Another object of the invention is to propose a method for controlling such a system for controlling the electrical supply of an energizer for an electric fence.
  • the first electronic circuit for controlling the switch and the second electronic circuit for controlling the switch have a common part.
  • the electronic control unit includes means for measuring the electrical power source of the energizer.
  • the electronic control unit comprises means for preserving the state in which the switch controlling the electrical supply to the energizer was located, in the event of temporary interruption of the electrical supply source of said electronic control unit.
  • the electronic control unit has an internal additional energy resource ensuring sufficient autonomy as well as software means for transmitting in RF an alert message when the electrical supply to the energizer is interrupted without command.
  • the electronic control unit comprises means for measuring the deterrent pulses circulating on the wire of the electric fence, at the level of the galvanic connection.
  • the electronic control unit comprises software means for transmitting in RF a message of possible failure of the energizer when said measurement reveals that the deterrent pulses have stopped on the wire of the electric fence without the The switch has not been ordered.
  • the software means control the opening of the switch controlling the electrical supply to the energizer when the means for measuring the deterrent pulses measure too high a characteristic of the pulses on the wire of the electric fence.
  • deterrent such as voltage, current, energy, or frequency of deterrent pulses.
  • the electronic control unit comprises electronic means and software for detecting the accidental presence of a dangerous permanent alternating current on the wire of the electric fence, and for opening the switch controlling the supply. of the energizer following such a detection.
  • the electronic control unit has a second galvanic link electrically isolated from the first galvanic link and intended for a second electric fence supplied with other deterrent pulses by another energizer.
  • the electronic control unit comprises at least one sensor from among the set of motion, temperature, humidity, noise sensors and software means for transmitting an alert message by the RF chip.
  • the measurement by the, at least one, sensor reveals alone, or in combination with the measurement of the electrical power source of the energizer, a possibility of manipulation, deterioration, displacement or theft, of the energizer .
  • the electronic control unit includes software means for modifying, by repeated opening and then closing of the switch, the time elapsing between two successive deterrent pulses circulating on the wire of the electric fence.
  • the electronic control unit comprises software and electronic means for varying the electrical supply voltage of the energizer in order to modify the size and / or the frequency of the deterrent pulses circulating on the wire of the electrical fence.
  • the electronic control unit comprises a light sensor and software means for, at nightfall, opening and closing the switch at a determined rate in order to save the consumption of the energizer when the wire the electric fence is less likely to be used by animals.
  • the electronic control unit comprises software and / or electronic means as well as an additional output terminal or galvanic link for connection to an auxiliary earth connection independent of the main earth connection used by the energizer. , in order to carry out the measurement by the electronic unit of the quality of the main earth connection.
  • the software means ensure the transmission in RF, of a message relating to a measurement when the latter has varied by more than X%, or by more than a predetermined value, relative to the last transmission .
  • the electronic control unit has electronic means and / or software for accumulating and compressing into a single message from the useful part of at least two successive messages going back to the RF chip.
  • the electronic control unit comprises electronic means and software for transforming RF signals received by the RF chip, into transmitted signals conducted by the wire of the electric fence.
  • the electronic means and / or software for transforming the received, conducted or RF signals into transmitted, RF or driven signals remain operational when the switch controlling the electrical supply to the energizer is open.
  • the electronic control unit comprises a man-machine interface, such as a sensitive display screen, LEDs, a barregraph, buttons, a keyboard or the like, allowing the user to locally take knowledge, edit or modify complex information, processed by the first electronic circuit or the second electronic circuit, such as a measurement, a alert message sent by the electronic unit or passing through it, or a parameter configuration.
  • a man-machine interface such as a sensitive display screen, LEDs, a barregraph, buttons, a keyboard or the like, allowing the user to locally take knowledge, edit or modify complex information, processed by the first electronic circuit or the second electronic circuit, such as a measurement, a alert message sent by the electronic unit or passing through it, or a parameter configuration.
  • a conventional type electric fence comprises stakes 1 supporting one or more fence wires 2 by means of insulators 3.
  • An energizer 4 is connected between the fence wire 2 and an earth connection 5.
  • the electrical supply of the energizer 4 is provided either by direct current by a battery 6 ( figure 1 ), or alternating current by sector 7 ( figure 2 ).
  • the pull-out box 8 has a galvanic connection with the electric fence by means of a wire 9 connected to the fence wire 2 and a wire 10 connected to the earth connection 5.
  • the pull-out box 8 In the case of an AC power supply from the sector 7, the pull-out box 8 is placed directly on the sector socket 7 by means of its male socket 11 and it receives in its female socket 12 the male socket 13 of the energizer 4.
  • a switch 14 In the nesting box 8, between the socket male 11 and the female socket 12 is arranged a switch 14 to control the electrical supply of the energizer 4.
  • the switch 14 In the case of a direct current supply the principle would remain identical, the switch 14 being arranged from the electrical point of view between terminals for connection to the battery on one side and to the energizer on the other.
  • the electronic control box for electric fence, or pull-out box 8 comprises an RF chip 16, transmitter and receiver, and a first electronic circuit 15 for controlling the switch 14, connected to the RF chip 16 by a link symbolized at 17.
  • the pull-out unit 8 comprises a second electronic circuit 19 for controlling the switch 14, connected, by a link symbolized at 18, to the electric fence via the galvanic link 9, 10.
  • the first electronic circuit 15 for controlling the switch 14, and the second electronic circuit 19 for controlling the switch 14 have a common part, in particular for the control of the switch 14 and the communication between the RF chip 16 and the wire 2 of the electrical fence.
  • the first electronic circuit 15 comprises, in particular, a programmable transceiver, a microcontroller, a memory and a relay for controlling the switch.
  • the second electronic circuit 19 comprises, in particular, a transformer and / or an isolation capacitor, an electronic signal demodulation stage conducted, a microcontroller, a memory, and, in an advantageous mode, a generator of modulated signals.
  • the first and second electronic circuits 15, 19 group together the electronic means for transforming signals conducted by the wire of the fence into RF signals emitted by the RF chip, and, in the advantageous mode, vice versa.
  • the control system of the electrical supply of the energizer 4 for electric fence comprises, apart from the electronic control unit 8, a pocket remote control 20 operating in contact with the wire 2 of the electric fence, and a pocket radio remote control 21, such as a smartphone or an RF remote control.
  • control system of the electrical supply of an energizer for an electric fence can be analyzed as follows, starting from an active electric fence, the fence wire of which is traversed by deterrent pulses emitted by the energizer. In the event of intervention on the electric fence, it is necessary to command the opening of the switch 14 to ensure the shutdown of the energizer 4.
  • This command to open the switch 14 is advantageously provided by the user of the fence, by means of the pocket radio remote control 21 which addresses RF signals to the RF chip 16 of the pull-out box 8.
  • the RF signals received by the RF chip 16 are processed by the first electronic circuit 15 which controls the opening of the switch 14. The intervention provided on the electric fence can then take place without risk.
  • the operator orders the restoration of the electrical supply to energizer 4, by means of the pocket remote control 20, placed in contact with the wire 2 of the electric fence, and which sends to the nesting box 8 signals conducted by the wire of the electric fence.
  • These signals are conducted by wire 2 of the electric fence and by wire 9 of the galvanic connection to the second electronic circuit 19 which controls the closing of the switch 14 and the restoration of the operation of the electric fence.
  • the nesting box 8 comprises electronic means and / or software for transforming signals conducted by the wire of the electric fence into RF signals emitted by the RF chip 16.
  • the first electronic circuit 15 and the second electronic circuit 19 have advantageously a common part constituting all or part of said electronic means, to ensure the transformation of the conducted signals into RF signals and, in a possible advantageous mode of the invention, vice versa.
  • the RF signals are sent to the pocket radio remote control 21, so that for example the user of the fence, if he is separate from the speaker on the closure, be informed of the restoration of the closure.
  • two people can work in tandem while being distant from each other and progressing separately along a complex electric fence without risk that the person with the radio control in his hands, remains uninformed that the one with the remote control in their hands has just restored power to the fence.
  • the electronic control box for electric fence, or nesting box 8 performs a number of functions.
  • the system of the invention ensures the conversion of RF signals received by the RF chip 16 and coming from the smartphone of the user of the fence, into signals conducted by the fence wire to specific elements of the electric fencing, such as answering machines or barrier crossings, to control them.
  • the nesting box 8 provides, by a user located at a distance, the control, by a control channel conducted, as by an RF control channel, of the switch 14 for supplying the energizer 4, and the bidirectional transmission of information relating to the ecosystem of the electric fence, from or to the user's smartphone.
  • the user thus has at his disposal two means of controlling the energizer: a manual remote control 20 to be placed in contact with the fence wire, and a smartphone 21, to avoid movement to the energizer. It thus has a double possibility.
  • the first at any point of the fence where the electrical path from / to the energizer may have deteriorated between the start and the end of a time-consuming intervention, for example due to a barrier passage left open between time by a walker upstream.
  • the second at any point of the fence where the smartphone can be in an area not served by an RF communication network.
  • the software means linked to the electronic circuits 15, 19 ensure the conservation in memory of the state of the switch 14, open or closed. When working on the fence, the switch is opened remotely. If, during the intervention, the electric power supply undergoes a temporary cut, due to a mains cut or a battery change, the conservation in memory of the state of the switch ensures, during the restoration of the power supply, maintaining or restoring the switch to the open position.
  • This capacity for keeping in memory the state of the switch 14 by the software means linked to the electronic circuits 15, 19 guarantees the safety of the user working on the electric fence, by preventing the energizer from re-energizing pulses on the fence wire.
  • the pull-out unit advantageously includes means for measuring the electrical power source of the energizer 4 and for informing the user in the event of an anomaly.
  • the pull-out unit preferably includes means for measuring the pulses flowing on the electric fence wire and for informing the user in the event of drift.
  • the pull-out unit advantageously has an internal additional energy resource ensuring sufficient autonomy, for example a battery or a capacitor, and software means allowing it, for example, to transmit in RF an alert message when the he power supply to the energizer has just been interrupted without this interruption having been commanded. This is for example to warn the user as soon as possible of a possible theft attempt of the battery supplying the energizer, or of a prolonged power failure.
  • an internal additional energy resource for example a battery or a capacitor
  • software means allowing it, for example, to transmit in RF an alert message when the he power supply to the energizer has just been interrupted without this interruption having been commanded. This is for example to warn the user as soon as possible of a possible theft attempt of the battery supplying the energizer, or of a prolonged power failure.
  • the software means of the nesting box transmit in RF a possible fault message. This is for example to warn the user as soon as possible of a possible equipment failure or an attempted theft of the energizer.
  • the software means of the electronic control unit open the switch.
  • Certain energizer technologies can indeed exhibit significant operating drifts when the components age, and in this perspective the system of the invention can advantageously precisely limit the risk involved.
  • the electronic and software means of the pull-out box are preferably able to detect the presence of a permanent alternating current on the wire of the electric fence then to trigger the opening of the switch 14. This to face the case of an electric fence adjoining for too long a high voltage line of the electrical network, and thereby undergoing a significant induced current.
  • the pull-out unit can have a second galvanic link, electrically isolated from the first galvanic link (9, 10) and possibly a second associated switch, all intended for a second electric fence supplied with other deterrent impulses by another energizer.
  • the pull-out unit may include one or more sensors from among all of the motion, temperature, humidity, noise sensors and software means for transmitting an alert message by the RF chip when the measurement by one or more of these sensors reveals alone, or in combination with the measurement of the electrical power source of the energizer, a possibility of manipulation, deterioration, displacement or theft, of the energizer.
  • the nesting box advantageously includes software means for modifying, by repeated opening and closing of the switch, the time elapsing between two successive deterrent pulses circulating on the wire of the electric fence in order, for example, to save the electricity consumption of the fence.
  • the nesting box includes software and electronic means for varying the electrical supply voltage of the energizer in order to modify the size and / or the frequency of the deterrent pulses circulating on the wire of the electric fence. .
  • the characteristics of these pulses can indeed very often, for a given energizer, vary significantly as a function of small variations in the voltage of its electrical supply around its nominal voltage.
  • the nesting box comprises a light sensor and software means for, at nightfall, opening and closing, on a determined rhythm, the switch in order to save the electrical consumption of the energizer (4) when the wire the electric fence is less likely to be used by animals.
  • the pull-out box includes software and / or electronic means and an additional output terminal or galvanic link, for connection to an auxiliary earth connection independent of the main earth connection used by the energizer, to measure the quality of the main earth connection.
  • the nesting box when a measurement has varied by more than a determined value, or in a determined proportion with respect to the reference value, the nesting box transmits in RF an alert message.
  • the nesting box has electronic means and / or software for accumulating and compressing into a single message, from the useful part of at least two successive messages going back to the RF chip.
  • the pull-out box comprises electronic means and software for transforming the digital RF signals received by the RF chip, into digital signals transmitted conducted by the wire of the electric fence.
  • the electronic means and / or software for transforming received, conducted or RF signals into transmitted, RF or driven signals remain operational when the switch controlling the electrical supply to the energizer is open.
  • the nesting box includes a man-machine interface, such as a sensitive display screen, LEDs, a bargraph, buttons, a keyboard or the like, allowing the user to locally learn, edit or modify, complex information, processed by the first electronic circuit or the second electronic circuit, such as a measurement, an alert message sent by the nesting box or passing through it, or a parameter configuration.
  • a man-machine interface such as a sensitive display screen, LEDs, a bargraph, buttons, a keyboard or the like, allowing the user to locally learn, edit or modify, complex information, processed by the first electronic circuit or the second electronic circuit, such as a measurement, an alert message sent by the nesting box or passing through it, or a parameter configuration.

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  • Life Sciences & Earth Sciences (AREA)
  • Insects & Arthropods (AREA)
  • Catching Or Destruction (AREA)
  • Selective Calling Equipment (AREA)
  • Alarm Systems (AREA)
  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)

Claims (21)

  1. Steuerverfahren eines Systems zur Steuerung der Stromversorgung für eine Spannungsquelle für Elektrozaun, bestehend aus:
    - einem elektronischen Steuerkasten (8), der zwischen der Spannungsquelle (4) und seiner Stromversorgung verbunden ist, umfassend einen RF-Sende- und Empfangschip (16), einen Schalter (14), der die Stromversorgung der Spannungsquelle (4) steuert, eine erste elektronische Schaltung (15) zum Steuern des Schalters (14), der von RF-Signalen gesteuert wird, eine galvanische Verbindung (9, 10) mit dem Elektrozaun und eine zweite elektronische Schaltung (19) zum Steuern des Schalters (14), der von Signalen, geleitet vom Draht (2) des Zauns, gesteuert wird,
    - einer Taschen-Funkbedienung (21), die RF-Signale mit dem RF-Chip (16) austauscht,
    - einer Taschen-Fernbedienung (20), die Signale, geleitet vom Draht (2) des Elektrozauns, sendet,
    gekennzeichnet durch die Folgenden Schritte:
    a) Versenden, durch die Funkbedienung (21), von RF-Signalen zum Steuern des Stopps der Stromversorgung der Spannungsquelle (4), erhalten durch die erste elektronische Schaltung (15) mit Hilfe des RF-Chips (16), und wobei die Öffnung des Schalters (14) sichergestellt wird,
    b) dann Versenden, durch die Fernbedienung (20), von Signalen zum Steuern der Wiederherstellung der Stromversorgung der Spannungsquelle (4), geleitet vom Draht (2) des Elektrozauns, erhalten durch die zweite elektronische Schaltung (19) mit Hilfe der galvanischen Verbindung (9, 10), und wobei der Verschluss des Schalters (14) sichergestellt wird, und
    c) Senden, durch die erste elektronische Schaltung (15), von RF-Signalen zum Erkennen des Verschlusses des Schalters (14) mit Hilfe des RF-Chips (16) in Richtung der Funkbedienung (21).
  2. System zur Steuerung der Stromversorgung für eine Spannungsquelle für Elektrozaun zur Durchführung des Verfahrens zum Steuern nach Anspruch 1, umfassend eine Taschen-Funkbedienung (21) wie z. B. ein Smartphone oder eine RF-Fernbedienung, und einen elektronischen Steuerkasten (8), das zwischen der Spannungsquelle (4) und seiner Stromversorgung verbunden ist, umfassend einen RF-Sende- und Empfangschip (16), umfassend Mittel, um RF-Signale mit der Taschen-Funkbedienung (21) auszutauschen, darin eingeschlossen auch ein Schalter (14), der Mittel umfasst, um die Stromversorgung der Spannungsquelle (4) zu steuern, und eingeschlossen auch eine erste elektronische Schaltung (15) zum Steuern des Schalters (14), umfassend Mittel, um RF-Signale mit dem RF-Chip (16) auszutauschen, wobei das System dadurch gekennzeichnet ist, dass
    - es eine Taschen-Fernbedienung (20) umfasst, umfassend Mittel, um Signale, geleitet vom Draht (2) des Elektrozauns, zu senden,
    - der elektronische Steuerkasten (8) eine galvanische Verbindung (9, 10) mit dem Elektrozaun einschließt,
    - der elektronische Steuerkasten (8) eine zweite elektronische Schaltung zum Steuern (19) des Schalters (14) einschließt, umfassend Mittel, um von der Taschen-Fernbedienung (20) mit Hilfe der galvanischen Verbindung (9, 10) Signale, geleitet vom Draht (2) des Elektrozauns, zu empfangen, und
    - der elektronische Steuerkasten (8) elektronische Mittel und/oder Software zur Umwandlung der Signale, geleitet vom Draht (2) des Elektrozauns, in RF-Signale, gesendet vom RF-Chip (16), einschließt.
  3. System nach Anspruch 2, dadurch gekennzeichnet, dass im elektronischen Steuerkasten (8) die erste elektronische Schaltung (15) zum Steuern des Schalters (14) und die zweite elektronische Schaltung (19) zum Steuern des Schalters (8) einen gemeinsamen Teil aufweisen.
  4. System nach einem der Ansprüche 2 oder 3, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) Mittel zur Messung der Stromversorgungsquelle der Spannungsquelle (4) umfasst.
  5. System nach einem der Ansprüche 2 bis 4, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) Mittel zur Beibehaltung des Zustands, in dem sich der Schalter (14) befand, der die Stromversorgung der Spannungsquelle (4) steuert, für den Fall einer vorübergehenden Unterbrechung der Stromversorgung des elektronischen Steuerkastens (8), umfasst.
  6. System nach einem der Ansprüche 2 bis 5, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) eine innere Hilfsenergiequelle für den Notfall umfasst, die ihm eine ausreichende Autonomie ebenso wie Softwaremittel garantiert, um ihm zu ermöglichen, in RF eine Warnmeldung zu übertragen, wenn die Stromversorgung der Spannungsquelle (4) ohne Steuern unterbrochen wird.
  7. System nach einem der Ansprüche 2 bis 6, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) Mittel zur Messung von Abschreckimpulsen umfasst, die auf dem Draht (2) des Elektrozauns auf der Ebene der galvanischen Verbindung zirkulieren.
  8. System nach Anspruch 7, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) Softwaremittel umfasst, um in RF eine Meldung eines möglichen Defekts der Spannungsquelle (4) zu übertragen, wenn die Messung zeigt, dass die Abschreckimpulse auf dem Draht (2) des Elektrozauns aufgehört haben, ohne dass der Schalter (14) gesteuert worden wäre.
  9. System nach Anspruch 7, dadurch gekennzeichnet, dass die Softwaremittel die Öffnung des Schalters (14) steuern, der die Stromversorgung der Spannungsquelle (4) steuert, wenn die Mittel zur Messung der Abschreckimpulse die auf dem Draht (2) des Elektrozauns eine zu bedeutende Eigenschaft der Abschreckimpulse messen, wie z. B. die Spannung, den Strom, die Energie oder die Frequenz der Abschreckimpulse.
  10. System nach einem der Ansprüche 2 bis 9, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) elektronische Mittel und Software zum Nachweis des zufälligen Vorhandenseins eines gefährlichen permanenten Wechselstroms auf dem Draht (2) des Elektrozauns umfasst und den Schalter (14) öffnet, der die Stromversorgung der Spannungsquelle (4) nach einem derartigen Nachweis steuert.
  11. System nach einem der Ansprüche 2 bis 10, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) über eine zweite galvanische Verbindung verfügt, die von der ersten galvanischen Verbindung (9, 10) elektrisch isoliert und für einen zweiten Elektrozaun bestimmt ist, der mit anderen Abschreckimpulsen durch eine andere Spannungsquelle versorgt wird.
  12. System nach einem der Ansprüche 2 bis 11, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) mindestens einen Sensor aus der Einheit von Bewegungs-, Temperatur-, Feuchtigkeits-, Lärmsensoren und Softwaremitteln umfasst, um durch den RF-Chip (16) eine Warnmeldung zu übertragen, wenn die Messung durch den mindestens einen Sensor alleine oder in Kombination mit der Messung der elektrischen Versorgungsquelle der Spannungsquelle eine Möglichkeit der Manipulation, der Beschädigung, der Versetzung oder des Diebstahls der Leistungsquelle (4) zeigt.
  13. System nach einem der Ansprüche 2 bis 12, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) Softwaremittel umfasst, um durch wiederholtes Öffnen, dann Schließen des Schalters (14) die Zeit zu modifizieren, die zwischen zwei aufeinanderfolgenden Abschreckimpulsen vergeht, die auf dem Draht (2) des Elektrozauns zirkulieren.
  14. System nach einem der Ansprüche 2 bis 13, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) Software- und elektronische Mittel umfasst, um die elektrische Versorgungsspannung der Spannungsquelle (4) variieren zu lassen, um die Höhe und/oder die Frequenz der Abschreckimpulse zu variieren, die auf dem Draht (2) des Elektrozauns zirkulieren.
  15. System nach einem der Ansprüche 2 bis 14, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) einen Lichtsensor und Softwaremittel umfasst, um bei Einbruch der Dunkelheit mit einem vorbestimmten Rhythmus den Schalter (14) zu öffnen und zu schließen, um beim Verbrauch der Spannungsquelle (4) zu sparen, wenn die geringste Gefahr besteht, dass der Draht (2) des Elektrozauns von Tieren erregt wird.
  16. System nach einem der Ansprüche 2 bis 15, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) Software- und/oder elektronische Mittel umfasst, ebenso wie eine zusätzliche Ausgangsklemme oder galvanische Verbindung zum Anschluss an eine Hilfserdung, die unabhängig von der Haupterdung ist, die von der Spannungsquelle (4) verwendet wird, um die Messung, durch den elektronischen Kasten (8), der Qualität der Haupterdung durchzuführen.
  17. System nach einem der Ansprüche 2 bis 16, dadurch gekennzeichnet, dass die Softwaremittel die Übertragung in RF einer Meldung mit Bezug auf eine Messung sicherstellen, wenn diese mehr als X % oder mehr von einem vorbestimmten Wert mit Bezug auf die letzte Übertragung variiert.
  18. System nach einem der Ansprüche 2 bis 17, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) über elektronische und/oder Softwaremittel zur Akkumulierung und Verdichtung in eine einzige Meldung des nützlichen Teils von mindestens zwei aufeinanderfolgenden Meldungen, die hin zum RF-Chip steigen, verfügt.
  19. System nach einem der Ansprüche 2 bis 18, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) elektronische und Softwaremittel zur Übertragung von RF-Signalen, erhalten vom RF-Chip (16), in gesendete Signale, die vom Draht (2) des Elektrozauns geleitet werden, umfasst.
  20. System nach einem der Ansprüche 17 bis 19, dadurch gekennzeichnet, dass die elektronischen und/oder Softwaremittel zur Übertragung der erhaltenen Signale, geleitet oder RF, in gesendete Signale, RF oder geleitet, betriebsbereit bleiben, wenn der Schalter (14), der die Stromversorgung der Spannungsquelle steuert, offen ist.
  21. System nach einem der Ansprüche 2 bis 20, dadurch gekennzeichnet, dass der elektronische Steuerkasten (8) eine Mensch-Maschine-Schnittstelle umfasst, wie z. B. einen sensiblen Anzeigebildschirm, LEDs, ein Balkendiagramm, Knöpfe, eine Tastatur oder ähnliches, die dem Benutzer ermöglichen, eine komplexe Information, verarbeitet von der ersten elektronischen Schaltung (15) oder der zweiten elektronischen Schaltung (19), wie z. B. eine Messung, eine Warnmeldung, ausgegeben vom elektronsichen Kasten oder durch diese verlaufend, oder eine Parameterkonfiguration wahrzunehmen, auszugeben oder zu modifizieren.
EP17710330.6A 2016-02-23 2017-02-20 System zur steuerung der stromversorgung einer spannungsquelle für elektrozaun und verfahren zum betrieb solch eines systems Active EP3420784B1 (de)

Priority Applications (1)

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PL17710330T PL3420784T3 (pl) 2016-02-23 2017-02-20 System sterujący zasilaniem elektrycznym elektryzatora do elektrycznego ogrodzenia i sposób sterowania nim

Applications Claiming Priority (2)

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FR1651451A FR3048152B1 (fr) 2016-02-23 2016-02-23 Systeme de controle de l'alimentation electrique d'un electrificateur pour cloture electrique et son procede de commande
PCT/FR2017/050371 WO2017144803A1 (fr) 2016-02-23 2017-02-20 Système de contrôle de l'alimentation électrique d'un électrificateur pour clôture électrique et son procédé de commande

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EP3420784A1 EP3420784A1 (de) 2019-01-02
EP3420784B1 true EP3420784B1 (de) 2020-04-01

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US (1) US10736203B2 (de)
EP (1) EP3420784B1 (de)
AU (1) AU2017224889B2 (de)
ES (1) ES2796932T3 (de)
FR (1) FR3048152B1 (de)
NZ (1) NZ744779A (de)
PL (1) PL3420784T3 (de)
WO (1) WO2017144803A1 (de)
ZA (1) ZA201805455B (de)

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CZ31675U1 (cs) 2018-01-09 2018-04-03 VNT electronics s.r.o. Systém pro monitoring a řízení elektrických ohradníků
US11064678B1 (en) * 2020-03-19 2021-07-20 Ben Persinger Electronic fence alert assembly

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AU705977B2 (en) 1995-08-11 1999-06-03 Gallagher Group Limited Safety operation for a security device
WO2000022750A1 (en) 1998-10-15 2000-04-20 Ullrich Holdings Ltd. System and method for electronically signalling along a fence line
IES81283B2 (en) 1998-11-09 2000-08-23 Tekelek Europ Ltd A communications device
FR2814035A1 (fr) * 2000-09-12 2002-03-15 Lacme Systeme de controle pour cloture electrique
DE10219777A1 (de) 2002-05-03 2003-11-13 Werner Stork Vorrichtung zum Betrieb eines Wildzauns oder dergleichen
GB2451018B (en) 2006-08-15 2009-03-18 Iti Scotland Ltd Power supply for a radio transceiver and method and apparatus for transmitting data
NZ581602A (en) * 2007-07-17 2011-10-28 Leslie Sean Hurly Electric fence energiser
NZ560968A (en) 2007-08-24 2010-06-25 Tru Test Ltd Electric fence system with modular components connected by wireless communication devices
US20130157628A1 (en) * 2009-01-15 2013-06-20 Dt Systems, Inc. Smart phone based electronic fence system
US20170303375A1 (en) * 2014-09-12 2017-10-19 Tru-Test Limited An electric fence energiser system and methods of operation and components thereof

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Publication number Publication date
ES2796932T3 (es) 2020-11-30
FR3048152B1 (fr) 2018-05-25
WO2017144803A1 (fr) 2017-08-31
ZA201805455B (en) 2019-11-27
AU2017224889A1 (en) 2018-08-16
US10736203B2 (en) 2020-08-04
NZ744779A (en) 2023-06-30
US20190053362A1 (en) 2019-02-14
PL3420784T3 (pl) 2020-11-30
AU2017224889B2 (en) 2021-08-05
FR3048152A1 (fr) 2017-08-25
EP3420784A1 (de) 2019-01-02

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