EP2100478B1 - Method for controlling induction heating devices in an electric cooking appliance - Google Patents

Method for controlling induction heating devices in an electric cooking appliance Download PDF

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Publication number
EP2100478B1
EP2100478B1 EP07846987A EP07846987A EP2100478B1 EP 2100478 B1 EP2100478 B1 EP 2100478B1 EP 07846987 A EP07846987 A EP 07846987A EP 07846987 A EP07846987 A EP 07846987A EP 2100478 B1 EP2100478 B1 EP 2100478B1
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EP
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Prior art keywords
power
induction heating
heating device
actual power
boost
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EP07846987A
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German (de)
French (fr)
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EP2100478A1 (en
Inventor
Christian Egenter
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EGO Elektro Geratebau GmbH
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EGO Elektro Geratebau GmbH
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B6/00Heating by electric, magnetic or electromagnetic fields
    • H05B6/02Induction heating
    • H05B6/06Control, e.g. of temperature, of power
    • H05B6/062Control, e.g. of temperature, of power for cooking plates or the like
    • H05B6/065Control, e.g. of temperature, of power for cooking plates or the like using coordinated control of multiple induction coils

Definitions

  • the invention relates to a method according to the preamble of claim 1 for controlling induction heating devices of an electric cooking appliance, in particular an induction hob.
  • the invention is based on the object to provide an aforementioned method, can be avoided with the problems of the prior art and in particular an advantageous and useful way and resulting control of induction heating of the type mentioned can be created.
  • the induction heating devices are connected to a supply connection with at least one outer conductor or the at least two induction heating devices are connected to the same outer conductor.
  • This outer conductor has a maximum load that must not be exceeded at any time, since in particular a corresponding protection of the outer conductor or the supply connection via a fuse box exists.
  • the induction heaters should be connected to a common outer conductor.
  • a first induction heater is to be operated with a large desired power, in particular its maximum target power or a so-called boost power.
  • Such a boost line is used, in particular at the time of cooking or at the beginning of a cooking operation, to operate the induction heating device for a short time, for example up to 10 or 15 minutes, with excess power and subsequently with a decrease to the normal maximum nominal power.
  • a further or second induction heater is to be operated with a low nominal power, this lower target power is advantageously below the possible maximum normal or boost power of this second induction heater.
  • the second induction heating device that is to say the one with the lower desired power, is operated with higher priority and with power as close as possible to the selected desired power.
  • the other first induction heater is reduced so far in terms of their actual performance that the maximum power of the outer conductor is maintained at all times.
  • the aforementioned large target power can be at least 90% of its maximum target power.
  • the aforementioned low target power can also be at least 90% of their maximum target power, but is in total just lower than that of the large target power.
  • the method is used when the second induction heater is connected to the outer conductor with a selected actual power up to a maximum of 50% of their maximum power. Then, the actual power of the first induction heater can be reduced, if doing the maximum load of the outer conductor would be exceeded, which is to be avoided in any case.
  • the method in this embodiment of the invention can be carried out when the target power of the second induction heater is in the lower range or a small range. Especially here it is of great advantage, if immediately after connecting this second induction heater of the selected operation with the target power as the actual power.
  • the first induction heater only relatively slightly in their actual power must be reduced in order to provide the power required for the second induction heater power reserve.
  • the second induction heater can not be operated or only with very low actual power. This would certainly be distracting to an operator.
  • the method is applied only in the case that a change in the actual power of the induction heating devices takes place when one of the two induction heating devices, preferably the aforementioned first induction heater, is operated with a boosting power.
  • a boost power operation takes place for a momentarily excessive actual power, ie it is above the normal intended maximum actual power which this induction heater can perform permanently or in continuous operation.
  • the induction heaters are operated with the power level, which is preset or selected by an operator, ie each with their target performance. In this case, it is generally assumed that the added up normal maximum continuous actual power of the two induction heaters is below the maximum load of the outer conductor.
  • Such a boost power can be, for example, such that a short-term power increase can take place by more than 50%; in particular, for large induction heaters, a normal intended maximum continuous actual power can be approximately 2.3 KW and a boost power at 3.7 KW, so much higher.
  • the duration of this boost power is advantageous in the above-mentioned 10 or 15 minutes.
  • the maximum load is just this 3.7 KW. This would mean that when operating a large induction heater with boost power a second, connected to the same outer conductor induction heater could not be operated.
  • the invention can also be applied to a single-conductor connection, ie if two or even more induction heating devices are connected to a single outer conductor of a single-phase supply connection.
  • the second induction heater in particular if it has a smaller normal intended maximum sustained actual power, priority or priority has before the first induction heater with higher actual power.
  • a power reduction by, for example, 10% at the higher actual power operated heater brings more for the smaller than the other way round.
  • an operator various feedback or signals are given.
  • a corresponding information is output to an operator.
  • the first induction heater with the larger actual power or the above-described boost power is reduced in performance and this is displayed to an operator.
  • Such a display or information display to an operator can be done by a special representation of the desired power or the actual power.
  • An embodiment of the invention is shown schematically in the drawing and shows a hob with four burners and two power units, which are each connected to an outer conductor of a supply terminal.
  • a hob 11 is shown with four burners 12a to d.
  • the hotplates 12a to d are each formed by induction heaters 13a to d and covered by a cooktop panel, not shown.
  • the left two induction heaters 13a and 13b are powered by a left power part 15a which is connected to the outer conductor L1 and the return conductor N of a supply terminal.
  • the two right induction heaters 13c and 13d are powered by a right power section 15b which is connected to the outer conductor L2 and the return conductor N at the same supply terminal.
  • the power values of the induction heaters 13a to d in FIG Fig. 1 located.
  • the induction heaters 13a-d may generate a momentarily excessive power, namely, the power P boost , particularly for cooking food. It will be appreciated that this boost power is significantly above normal power, sometimes greater by more than half, such as induction heater 13a.
  • Such boosting powers are known to the person skilled in the art, in particular for induction heating devices.
  • the two power units 15a and 15b contain power electronics, usually inverters or the like, for the respective induction heaters 13a to d. They are controlled by a controller 17.
  • the controller 17 in turn is connected to an operating device 18, the controls 19 and lights 21, for example, seven-segment displays or simply lamps or LED has. Via the operating elements 19, an operator can make a power adjustment or change. On the lights 21 this is displayed optically.
  • a symbol for the selected boost power stage for example a specific number, can be displayed on the light indicators 21 and, on the other hand, another symbol or another number.

Abstract

A method and system for controlling four induction heating devices of a hob is described. In an embodiment of said method, the induction devices are connected to a power supply with three outer conductors, every outer conductor having a maximum load. Two induction heating devices are connected to an outer conductor via a common power section. If a first induction heating device is operated with a boost power and a second induction heating device with a lower rated power, the second induction heating device is operated in a prioritized manner and with an actual power that is close to the selected rated power while the actual power of the first induction heating device is reduced to such a degree as to not exceed the maximum load of the outer conductor.

Description

Anwendungsgebiet und Stand der TechnikField of application and state of the art

Die Erfindung betrifft ein Verfahren gemäß dem Oberbegriff des Anspruchs 1 zum Steuern von Induktionsheizeinrichtungen eines Elektrokochgerätes, wie insbesondere eines Induktionskochfeldes.The invention relates to a method according to the preamble of claim 1 for controlling induction heating devices of an electric cooking appliance, in particular an induction hob.

Es ist beispielsweise aus der EP 1 018 793 A2 bekannt, dass bei taktend betriebenen Heizungseinrichtungen wie beispielsweise Strahlungsheizungseinrichtungen eines Kochfeldes, bei mehreren an einen Außenleiter eines Versorgungsanschlusses anzuschließenden Heizungseinrichtungen die Takt-Zeiten so verschoben werden können, dass bei einem aufgrund der Gesamt-Leistung nicht möglichen gemeinsamen Betrieb mit jeweils der Soll-Leistung die Ein-Leistungszeiten so gelegt werden, dass zu einem bestimmten Zeitpunkt jeweils nur eine Heizungseinrichtung an den Außenleiter angeschlossen ist. Dies mag bei taktend betriebenen Heizungseinrichtungen noch möglich sein. Für kontinuierlich betriebene Induktionsheizeinrichtungen ist dies jedoch nicht sinnvoll.It is for example from the EP 1 018 793 A2 It is known that when cyclically operated heating devices such as radiant heating devices of a hob, with several to be connected to an outer conductor of a supply port heating devices, the clock times can be shifted so that at a total power not possible due to common operation with each of the target power the One-performance times are set so that at any given time only one heating device is connected to the outer conductor. This may still be possible with cyclically operated heating devices. However, this does not make sense for continuously operated induction heaters.

Aufgabe und LösungTask and solution

Der Erfindung liegt die Aufgabe zu Grunde, ein eingangs genanntes Verfahren zu schaffen, mit dem Probleme des Standes der Technik vermieden werden können und insbesondere eine vorteilhafte sowie sinnvolle Möglichkeit und ergebende Ansteuerung von Induktionsheizeinrichtungen der eingangs genannten Art geschaffen werden kann.The invention is based on the object to provide an aforementioned method, can be avoided with the problems of the prior art and in particular an advantageous and useful way and resulting control of induction heating of the type mentioned can be created.

Gelöst wird diese Aufgabe durch ein Verfahren mit den Merkmalen des Anspruchs 1. Vorteilhafte sowie bevorzugte Ausgestaltungen der Erfindung sind Gegenstand weiterer Ansprüche und werden im Folgenden näher erläutert. Der Wortlaut der Ansprüche wird durch ausdrückliche Bezugnahme zum Inhalt der Beschreibung gemacht.This object is achieved by a method having the features of claim 1. Advantageous and preferred embodiments of the invention are the subject of further claims and are explained in more detail below. The wording of the claims is incorporated herein by express reference.

Es ist vorgesehen, dass die Induktionsheizeinrichtungen an einen Versorgungsanschluss mit mindestens einem Außenleiter angeschlossen werden bzw. die mindestens zwei Induktionsheizeinrichtungen an denselben Außenleiter angeschlossen werden. Dieser Außenleiter weist eine Höchst-Last auf, die zu keinem Zeitpunkt überschritten werden darf, da insbesondere eine entsprechende Absicherung des Außenleiters bzw. des Versorgungsanschlusses über einen Sicherungskasten besteht. Die Induktionsheizeinrichtungen sollen an einen gemeinsamen Außenleiter angeschlossen werden. Eine erste Induktionsheizeinrichtung soll mit einer großen Soll-Leistung betrieben werden, insbesondere ihrer maximalen Soll-Leistung bzw. einer sogenannten Boost-Leistung. Eine derartige Boost-Leitung dient dazu, insbesondere beim Ankochen bzw. zu Beginn eines Kochvorgangs, die Induktionsheizeinfichtung für kurze Zeit, beispielsweise bis zu 10 oder 15 Minuten, mit Überleistung und anschließend mit Rückgang auf der normalen maximalen Soll-Leistung zu betreiben. Eine weitere bzw. zweite Induktionsheizeinrichtung soll mit einer geringen Soll-Leistung betrieben werden, wobei diese geringere Soll-Leistung vorteilhaft unter der möglichen maximalen normalen bzw. Boost-Leistung dieser zweiten Induktionsheizeinrichtung liegt. Erfindungsgemäß wird die zweite Induktionsheizeinrichtung, also die mit der geringeren Soll-Leistung, mit höherer Priorität und mit möglichst nahe an der gewählten Soll-Leistung liegenden Leistung betrieben. Die andere erste Induktionsheizeinrichtung wird so weit hinsichtlich ihrer Ist-Leistung reduziert, dass die Höchst-Leistung des Außenleiters jederzeit eingehalten wird.It is provided that the induction heating devices are connected to a supply connection with at least one outer conductor or the at least two induction heating devices are connected to the same outer conductor. This outer conductor has a maximum load that must not be exceeded at any time, since in particular a corresponding protection of the outer conductor or the supply connection via a fuse box exists. The induction heaters should be connected to a common outer conductor. A first induction heater is to be operated with a large desired power, in particular its maximum target power or a so-called boost power. Such a boost line is used, in particular at the time of cooking or at the beginning of a cooking operation, to operate the induction heating device for a short time, for example up to 10 or 15 minutes, with excess power and subsequently with a decrease to the normal maximum nominal power. A further or second induction heater is to be operated with a low nominal power, this lower target power is advantageously below the possible maximum normal or boost power of this second induction heater. According to the invention, the second induction heating device, that is to say the one with the lower desired power, is operated with higher priority and with power as close as possible to the selected desired power. The other first induction heater is reduced so far in terms of their actual performance that the maximum power of the outer conductor is maintained at all times.

Die vorgenannte große Soll-Leistung kann mindestens 90% ihrer maximalen Soll-Leistung betragen. Die vorgenannte geringe Soll-Leistung kann ebenfalls mindestens 90% ihrer maximalen Soll-Leistung betragen, ist allerdings insgesamt eben geringer als die der großen Soll-Leistung.The aforementioned large target power can be at least 90% of its maximum target power. The aforementioned low target power can also be at least 90% of their maximum target power, but is in total just lower than that of the large target power.

Damit wird im Rahmen der Erfindung berücksichtigt, dass zum Vorteil bzw. Bedienkomfort eines Bedieners neben der absoluten Höhe der jeweiligen Leistung auch deren relative Höhe zueinander bewertet wird und durch eine relativ geringe Reduzierung der Ist-Leistung der ersten Induktionsheizeinrichtung mit sehr hoher Leistung bzw. der Boost-Leistung ein entsprechender Freiraum für die andere oder die anderen Induktionsheizeinrichtungen geschaffen wird. Eine solche Reduzierung der Ist-Leistung der ersten Induktionsheizeinrichtung kann maximal 20 % betragen. Vorteilhaft beträgt sie maximal 15 % oder sogar nur maximal 10 %. Diese geringere Auswirkung auf den Kochverlauf fällt einem Bediener hier weit weniger auf bzw. wird als weniger störend empfunden. Werden mehr als zwei Induktionsheizeinrichtungen an demselben Leiter betrieben, und eine Induktionsheizeinrichtung mit der genannten Über-Leistung, so findet eine Leistungsreduktion dieser mit Über-Leistung betriebenen Induktionsheizeinrichtung statt. Die frei gewordene Leistung wird auf die anderen Induktionsheizeinrichtungen verteilt, vorteilhaft mit bevorzugter Zuteilung an diejenige mit der geringsten eingestellten Leistungsstufe.This is taken into account in the invention that for the benefit or ease of use of an operator in addition to the absolute height of the respective power and their relative height is evaluated each other and by a relatively small reduction of the actual power of the first induction heater with very high performance or Boost performance a corresponding space for the other or the other induction heaters is created. Such a reduction of the actual power of the first induction heater can amount to a maximum of 20%. Advantageously, it is a maximum of 15% or even a maximum of 10%. This lower effect on the cooking process is much less noticeable to an operator or less disturbing. If more than two induction heaters are operated on the same conductor, and an induction heater with said over-power, there is a power reduction of this over-powered induction heater. The power that has become available is distributed to the other induction heaters, advantageously with a preferred allocation to the one with the lowest power level set.

Es kann vorgesehen sein, dass das Verfahren dann angewendet wird, wenn die zweite Induktionsheizeinrichtung mit einer gewählten Ist-Leistung bis zu maximal 50 % ihrer Maximal-Leistung an den Außenleiter angeschlossen wird. Dann kann die Ist-Leistung der ersten Induktionsheizeinrichtung reduziert werden, falls dabei die Höchst-Last des Außenleiters überschritten werden würde, was auf alle Fälle zu vermeiden ist. Insofern kann das Verfahren in dieser Ausgestaltung der Erfindung dann durchgeführt werden, wenn die Soll-Leistung der zweiten Induktionsheizeinrichtung im niedrigeren Bereich bzw. einem geringen Bereich liegt. Gerade hier ist es von großem Vorteil, wenn sofort nach Anschließen dieser zweiten Induktionsheizeinrichtung der gewählte Betrieb mit der Soll-Leistung als Ist-Leistung erfolgt. Des Weiteren ist hier vor allem zu beachten, dass bei einer geringen Soll-Leistung der zweiten Induktionsheizeinrichtung die erste Induktionsheizeinrichtung nur relativ geringfügig in ihrer Ist-Leistung reduziert werden muss, um die für die zweite Induktionsheizeinrichtung benötigte Leistungsreserve zu schaffen. In Extremfällen könnte es nämlich sein, dass aufgrund der hohen Ist-Leistung der ersten Induktionsheizeinrichtung die zweite Induktionsheizeinrichtung gar nicht oder nur mit äußerst geringer Ist-Leistung betrieben werden kann. Dies würde von einem Bediener sicherlich als störend empfunden werden.It can be provided that the method is used when the second induction heater is connected to the outer conductor with a selected actual power up to a maximum of 50% of their maximum power. Then, the actual power of the first induction heater can be reduced, if doing the maximum load of the outer conductor would be exceeded, which is to be avoided in any case. In this respect, the method in this embodiment of the invention can be carried out when the target power of the second induction heater is in the lower range or a small range. Especially here it is of great advantage, if immediately after connecting this second induction heater of the selected operation with the target power as the actual power. Furthermore, it should be noted here above all that at a low target power of the second induction heater, the first induction heater only relatively slightly in their actual power must be reduced in order to provide the power required for the second induction heater power reserve. In extreme cases, it could be that due to the high actual power of the first induction heater, the second induction heater can not be operated or only with very low actual power. This would certainly be distracting to an operator.

Des Weiteren kann vorgesehen sein, dass das Verfahren nur in dem Fall angewendet wird, dass eine Änderung der Ist-Leistung der Induktionsheizeinrichtungen dann erfolgt, wenn eine der beiden Induktionsheizeinrichtungen, vorzugsweise die vorgenannte erste Induktionsheizeinrichtung, mit einer Boost-Leistung betrieben wird. Bei einer derartigen Boost-Leistung erfolgt ein Betrieb mit kurzzeitig überhöhter Ist-Leistung, sie liegt also über der normalen vorgesehenen maximalen Ist-Leistung, die diese Induktionsheizeinrichtung dauerhaft bzw. in Dauerbetrieb leisten kann. In nochmals weiterer Ausgestaltung der Erfindung kann vorgesehen sein, dass nach einem Ende der gewünschten Heizdauer der ersten Induktionsheizeinrichtung mit der Boost-Leistung bei noch ausreichender Lastreserve des Außenleiters die Induktionsheizeinrichtungen mit der Leistungsstufe betrieben werden, die durch einen Bediener voreingestellt bzw. gewählt ist, also jeweils mit ihrer Soll-Leistung. Hier ist nämlich in der Regel davon auszugehen, dass die aufaddierte normale maximale dauernde Ist-Leistung der beiden Induktionsheizeinrichtungen unter der Höchst-Last des Außenleiters liegt.Furthermore, it may be provided that the method is applied only in the case that a change in the actual power of the induction heating devices takes place when one of the two induction heating devices, preferably the aforementioned first induction heater, is operated with a boosting power. In the case of such a boost power, operation takes place for a momentarily excessive actual power, ie it is above the normal intended maximum actual power which this induction heater can perform permanently or in continuous operation. In yet another embodiment of the invention can be provided that after an end of the desired heating time of the first induction heater with the boost power with sufficient load reserve of the outer conductor, the induction heaters are operated with the power level, which is preset or selected by an operator, ie each with their target performance. In this case, it is generally assumed that the added up normal maximum continuous actual power of the two induction heaters is below the maximum load of the outer conductor.

Eine derartige Boost-Leistung kann beispielsweise so sein, dass eine kurzzeitige Leistungsüberhöhung um mehr als 50 % erfolgen kann, insbesondere kann für große Induktionsheizeinrichtungen eine normale vorgesehene maximale dauernde Ist-Leistung bei etwa 2,3 KW liegen und eine Boost-Leistung bei 3,7 KW, also erheblich höher. Die Dauer dieser Boost-Leistung liegt vorteilhaft bei den eingangs genannten 10 oder 15 Minuten. Bei üblichen Versorgungsanschlüssen in einem Haushalt mit Drei-Leiter-Anschluss und 230 Volt beträgt die Höchst-Last gerade diese 3,7 KW. Dies würde also bedeuten, dass bei Betrieb einer großen Induktionsheizeinrichtung mit Boost-Leistung eine zweite, an denselben Außenleiter angeschlossene Induktionsheizeinrichtung gar nicht betrieben werden könnte. Die Erfindung kann selbstverständlich auch bei einem Ein-Leiter-Anschluss angewendet werden, wenn also zwei oder noch mehr Induktionsheizeinrichtungen an einen einzigen Außenleiter eines einphasigen Versorgungsanschlusses angeschlossen sind.Such a boost power can be, for example, such that a short-term power increase can take place by more than 50%; in particular, for large induction heaters, a normal intended maximum continuous actual power can be approximately 2.3 KW and a boost power at 3.7 KW, so much higher. The duration of this boost power is advantageous in the above-mentioned 10 or 15 minutes. For normal supply connections in a household with three-wire connection and 230 volts, the maximum load is just this 3.7 KW. This would mean that when operating a large induction heater with boost power a second, connected to the same outer conductor induction heater could not be operated. Of course, the invention can also be applied to a single-conductor connection, ie if two or even more induction heating devices are connected to a single outer conductor of a single-phase supply connection.

Ebenso ist die Anwendung der Erfindung bzw. des Verfahrens bei gemischter Verwendung von kontinuierlich in der Leistung regelbaren Induktionsheizungen zusammen mit über das Ein-Zeit-Verhältnis, also über einen taktenden Betrieb, geregelten Strahlheizkörpern möglich.Likewise, the application of the invention or the method in mixed use of continuously variable in the power induction heaters together with over the one-time ratio, ie via a clocking operation, controlled radiant heaters possible.

In weiterer Ausgestaltung der Erfindung kann vorgesehen sein, dass die zweite Induktionsheizeinrichtung, insbesondere wenn sie eine kleinere normale vorgesehene maximal dauernde Ist-Leistung aufweist, Vorrang bzw. Priorität hat vor der ersten Induktionsheizeinrichtung mit höherer Ist-Leistung. Auch hier wird neben dem Effekt, dass bei sehr großen Leistungen eine geringere Reduzierung eher störend bemerkt wird, ausgenutzt, dass eine Leistungsreduktion um beispielsweise 10 % bei der mit höherer Ist-Leistung betriebenen Heizeinrichtung mehr für die kleinere bringt als anders herum.In a further embodiment of the invention can be provided that the second induction heater, in particular if it has a smaller normal intended maximum sustained actual power, priority or priority has before the first induction heater with higher actual power. Again, in addition to the effect that a smaller reduction is rather distracting noticed at very high power, exploited that a power reduction by, for example, 10% at the higher actual power operated heater brings more for the smaller than the other way round.

Des Weiteren kann bei einem vorgenannten Steuerverfahren vorgesehen sein, dass einem Bediener verschiedene Rückmeldungen bzw. Signale gegeben werden. Beispielsweise kann vorgesehen sein, dass bei einer Wahl für die Soll-Leistung einer zweiten Induktionsheizeinrichtung mit kleinerer Leistung als diejenige der ersten Induktionsheizeinrichtung an demselben Außenleiter und in dem Fall, dass die zweite Induktionsheizeinrichtung mit einer Ist-Leistung unterhalb der gewählten Soll-Leistung betrieben wird, eine entsprechende Information an einen Bediener ausgegeben wird. Ebenso kann für den eher normalen Fall des erfindungsgemäßen Verfahrens vorgesehen sein, dass nämlich die erste Induktionsheizeinrichtung mit der größeren Ist-Leistung bzw. der vorbeschriebenen Boost-Leistung in ihrer Leistung reduziert wird und dies einem Bediener angezeigt wird. Eine derartige Anzeige oder Informationsdarstellung an einen Bediener kann durch spezielle Darstellung der Soll-Leistung bzw. der Ist-Leistung erfolgen. So wird es als vorteilhaft angesehen, eine Soll-Leistung und eine tatsächlich eingestellte, demgegenüber reduzierte Ist-Leistung im Wechsel darzustellen, beispielsweise zumindest eine von beiden mit blinkendem Betrieb. So kann vorgesehen sein, dass abwechselnd die Soll-Leistung und die Ist-Leistung dargestellt wird, wobei ein Hinweis auf die eigentlich eingestellte Leistung durch blinkende Darstellung genau dieser Leistung erfolgen kann.Furthermore, it can be provided in an aforementioned control method that an operator various feedback or signals are given. For example, it can be provided that in a choice for the target power of a second induction heater with lower power than that of the first induction heater on the same outer conductor and in the event that the second induction heater is operated with an actual power below the selected target power, a corresponding information is output to an operator. It can also be provided for the more normal case of the method according to the invention, namely that the first induction heater with the larger actual power or the above-described boost power is reduced in performance and this is displayed to an operator. Such a display or information display to an operator can be done by a special representation of the desired power or the actual power. Thus, it is considered advantageous to alternately display a desired power and an actually set, reduced actual power, for example at least one of them with flashing operation. Thus, it can be provided that alternately the target power and the actual power is displayed, with an indication of the actually set power can be done by flashing presentation of exactly this power.

Die vorstehenden und weitere Merkmale gehen außer aus den Ansprüchen auch aus der Beschreibung und der Zeichnung hervor, wobei die einzelnen Merkmale jeweils für sich allein oder zu mehreren in Form von Unterkombinationen bei einer Ausführungsform der Erfindung und auf anderen Gebieten verwirklicht sein und vorteilhafte sowie für sich schutzfähige Ausführungen darstellen können, für die hier Schutz beansprucht wird. Die Unterteilung der Anmeldung in einzelne Abschnitte sowie Zwischenüberschriften beschränkt die unter diesen gemachten Aussagen nicht in ihrer Allgemeingültigkeit.The foregoing and other features will become apparent from the claims and from the description and drawings, wherein the individual features each alone or more in the form of sub-combinations in an embodiment of the invention and in other fields be realized and advantageous as well represent protectable versions for which protection is claimed here. The subdivision of the application into individual sections as well as subheadings does not restrict the general validity of the statements made thereunder.

Kurzbeschreibung der ZeichnungBrief description of the drawing

Ein Ausführungsbeispiel der Erfindung ist in der Zeichnung schematisch dargestellt und zeigt ein Kochfeld mit vier Kochstellen und zwei Leistungsteilen, die jeweils an einem Außenleiter eines Versorgungsanschlusses angeschlossen sind.An embodiment of the invention is shown schematically in the drawing and shows a hob with four burners and two power units, which are each connected to an outer conductor of a supply terminal.

Detaillierte Beschreibung des AusführungsbeispielsDetailed description of the embodiment

In Fig. 1 ist ein Kochfeld 11 dargestellt mit vier Kochstellen 12a bis d. Die Kochstellen 12a bis d werden jeweils von Induktionsheizeinrichtungen 13a bis d gebildet und von einer nicht dargestellten Kochfeldplatte überdeckt. Die linken beiden Induktionsheizeinrichtungen 13a und 13b sind von einem linken Leistungsteil 15a mit Leistung versorgt, welches an den Außenleiter L1 und den Rückleiter N eines Versorgungsanschlusses angeschlossen ist. Die beiden rechten Induktionsheizeinrichtungen 13c und 13d werden von einem rechten Leistungsteil 15b mit Leistung versorgt, welches bei demselben Versorgungsanschluss an den Außenleiter L2 und den Rückleiter N angeschlossen ist. Der Einfachheit halber sind die Leistungswerte der Induktionsheizeinrichtungen 13a bis d in Fig. 1 eingezeichnet. Sie weisen jeweils eine Leistung Pnormal auf, welche für einen sog. normalen Dauerbetrieb die maximale Leistung ist. Des Weiteren können die Induktionsheizeinrichtungen 13a bis d jedoch eine kurzzeitig überhöhte Leistung erzeugen, nämlich die Leistung PBoost, insbesondere zum Ankochen von Speisen. Es ist zu erkennen, dass diese Boost-Leistung erheblich über der normalen Leistung liegt, teilweise um mehr als die Hälfte größer ist, wie beispielsweise bei der Induktionsheizeinrichtung 13a. Derartige Boost-Leistungen sind dem Fachmann insbesondere für Induktionsheizeinrichtungen bekannt.In Fig. 1 a hob 11 is shown with four burners 12a to d. The hotplates 12a to d are each formed by induction heaters 13a to d and covered by a cooktop panel, not shown. The left two induction heaters 13a and 13b are powered by a left power part 15a which is connected to the outer conductor L1 and the return conductor N of a supply terminal. The two right induction heaters 13c and 13d are powered by a right power section 15b which is connected to the outer conductor L2 and the return conductor N at the same supply terminal. For the sake of simplicity, the power values of the induction heaters 13a to d in FIG Fig. 1 located. They each have a power P normal , which is the maximum power for so-called normal continuous operation. Furthermore, however, the induction heaters 13a-d may generate a momentarily excessive power, namely, the power P boost , particularly for cooking food. It will be appreciated that this boost power is significantly above normal power, sometimes greater by more than half, such as induction heater 13a. Such boosting powers are known to the person skilled in the art, in particular for induction heating devices.

Die beiden Leistungsteile 15a und 15b enthalten eine Leistungselektronik, in der Regel Umrichter odgl., für die jeweiligen Induktionsheizeinrichtungen 13a bis d. Sie werden angesteuert von einer Steuerung 17. Die Steuerung 17 wiederum ist mit einer Bedienungseinrichtung 18 verbunden, die Bedienelemente 19 und Leuchtanzeigen 21, beispielsweise Sieben-Segment-Anzeigen oder einfach Lampen bzw. LED, aufweist. Über die Bedienelemente 19 kann ein Bediener eine Leistungseinstellung oder Änderung vornehmen. An den Leuchtanzeigen 21 wird dies optisch dargestellt.The two power units 15a and 15b contain power electronics, usually inverters or the like, for the respective induction heaters 13a to d. They are controlled by a controller 17. The controller 17 in turn is connected to an operating device 18, the controls 19 and lights 21, for example, seven-segment displays or simply lamps or LED has. Via the operating elements 19, an operator can make a power adjustment or change. On the lights 21 this is displayed optically.

Aus den folgenden Tabellen Tab. 1 und Tab. 2 ist zu ersehen, wie für die Induktionsheizeinrichtung 13a mit der sehr hohen Boost-Leistung PBoost und die Induktionsheizeinrichtung 13b mit der erheblich geringeren normalen Leistung Pnormal eine Leistungsverteilung aussieht. Diese beiden Induktionsheizeinrichtungen sind an das gleiche Leistungsteil 15a angeschlossen. In der Tabelle Tab. 2 ist dies für die Induktionsheizeinrichtung 13c im Boost-Betrieb mit PBoost und für die Induktionsheizeinrichtung 13d im normalen Betrieb dargestellt. Tab. 1 Kochstelle 1
[PBoost]
Unterleistung
[%]
Verfügbare Restleistung für Kochstelle 2 Leistung Kochstelle 2 bei Pnormal = 1400 W = 100 %
3700 W 0 % 0 W 0 % 3700 W -10 % 370 W 26 % 3700 W -15 % 555 W 40 % 3700 W -20 % 740 W 53 %
Tab. 2 Kochstelle 3 [P]
[PBoost]
Unterleistung
[%]
Verfügbare Restleistung für Kochstelle 4 Leistung Kochstelle 2 bei Pnormal = 1800 W = 100 %
3000 W 0 % 700 W 39 % 3000 W -10 % 1000 W 56 % 3000 W -15 % 1150 W 64 % 3000 W -20 % 1300 W 72 %
From the following tables Tab. 1 and Tab. 2 it can be seen how for the induction heater 13a with the very high boost power P Boost and the induction heater 13b with the considerably lower normal power P normally looks like a power distribution. These two induction heaters are connected to the same power part 15a. In the table Tab. 2 this is shown for the induction heater 13c in Boost mode with P Boost and for the induction heater 13d in normal operation. Tab. 1 Cooking place 1
[P boost ]
under performance
[%]
Available residual power for hob 2 Cooker 2 power at P normal = 1400 W = 100%
3700 W 0% 0 W 0% 3700 W -10% 370 W 26% 3700 W -15% 555 W 40% 3700 W -20% 740 W 53%
Hotplate 3 [P]
[P boost ]
under performance
[%]
Available residual power for hob 4 Cooker 2 power at P normal = 1800 W = 100%
3000 W 0% 700 W 39% 3000 W -10% 1000W 56% 3000 W -15% 1150 W 64% 3000 W -20% 1300 W 72%

Aus den Tabellen ist zu ersehen, dass mit jeweils mit geringer Unterleistung für die Induktionsheizeinrichtung mit Boost-Betrieb für die andere Induktionsheizeinrichtung mit normalem Betrieb am selben Leistungsteil eine ausreichende Leistungsreserve geschaffen werden kann bzw. sie mit etwa einem Drittel bis zur Hälfte der maximalen normalen Leistung, also einer etwa mittleren Leistungsstufe, betrieben werden kann.From the tables it can be seen that each with a small underpower for the induction heater with boost operation for the other induction heater with normal operation on the same power unit, a sufficient power reserve can be created or with about one-third to half of the maximum normal power , so an approximately average power level, can be operated.

An den Leuchtanzeigen 21 kann im Fall einer Leistungsreduzierung einer Induktionsheizeinrichtung mit Boost-Betrieb im Wechsel einerseits ein Symbol für die gewählte Boost-Leistungsstufe, beispielsweise eine bestimmte Zahl, dargestellt werden und andererseits ein anderes Symbol oder eine andere Zahl. Es kann auch ein zusätzliches Symbol blinken, mit dem normalerweise der Boost-Betrieb bei einer Induktionsheizeinrichtung angezeigt wird.In the case of a power reduction of an induction heater with boost operation, on the one hand, a symbol for the selected boost power stage, for example a specific number, can be displayed on the light indicators 21 and, on the other hand, another symbol or another number. There may also be an additional icon flashing that normally indicates Boost on an induction heater.

Claims (7)

  1. A method for controlling induction heating devices (13a-d) in an electric cooking appliance (11), the induction heating devices (13a-d) being connected to a power supply connection with at least one phase conductor, the at least one phase conductor comprising a maximum load, in each case at least two induction heating devices (13) being connectable to one phase conductor (L1, L2) and a first induction heating device (13a, 13c) being intended for operation with very high desired power, in particular its maximum or a boost power (PBoost), and a second induction heating device (13b, 13d) with lower desired power, characterised in that the second induction heating device is operated with priority and with an actual power close to the selected desired power and the first induction heating device is reduced to such an extent with regard to its actual power that the maximum load of the phase conductor (L1, L2) is complied with.
  2. A method according to claim 1, characterised in that in the case of the first induction heating device (13a, 13c) a reduction in actual power of at most 20% is effected, preferably at most 15% or 10%.
  3. A method according to claim 1 or 2, characterised in that the second induction heating device (13b, 13d) is connected to the phase conductor (L1, L2) with a selected actual power of up to at most 50% of its maximum power and, if the maximum load would then be exceeded, the actual power of the first induction heating device (13a, 13c) is reduced.
  4. A method according to any one of the preceding claims, characterised in that a change in the actual power of the induction heating devices (13a-d) only takes place if one of the two induction heating devices, preferably the first induction heating device (13a, 13c), is operated with boost power (PBoost), with the actual power increased above the normal intended maximum continuous actual power for a few minutes, in particular up to 10 or 15 minutes.
  5. A method according to claim 4, characterised in that, after termination as specified of the heating period of the first induction heating device (13a, 13c) at boost power (PBoost), if there is a sufficient load reserve of the phase conductor (L1, L2) below the maximum load thereof, the induction heating devices are operated with the desired power set by an operator as actual power.
  6. A method according to any one of the preceding claims, characterised in that the second induction heating device (13b, 13d), in particular with the lower normal intended maximum continuous actual power, takes priority over the first induction heating device (13a, 13c).
  7. A method according to any one of the preceding claims, characterised in that, in the case of selection for the desired power of a second induction heating device (13b, 13d) of a lower power than that of the first induction heating device (13a, 13c) using the same phase conductor (L1, L2) and where the second induction heating device is operated with an actual power below the selected desired power, corresponding information is output to an operator, in particular by specific display of the desired power and the actual power, preferably by flashing with alternation between the desired power and the actually established reduced actual power.
EP07846987A 2006-12-06 2007-12-05 Method for controlling induction heating devices in an electric cooking appliance Revoked EP2100478B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102006058874A DE102006058874A1 (en) 2006-12-06 2006-12-06 Method for controlling induction heating devices in an electric cooking appliance
PCT/EP2007/010540 WO2008067999A1 (en) 2006-12-06 2007-12-05 Method for controlling induction heating devices in an electric cooking appliance

Publications (2)

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EP2100478A1 EP2100478A1 (en) 2009-09-16
EP2100478B1 true EP2100478B1 (en) 2010-03-31

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US (1) US20090250454A1 (en)
EP (1) EP2100478B1 (en)
JP (1) JP5263977B2 (en)
AT (1) ATE463143T1 (en)
DE (2) DE102006058874A1 (en)
ES (1) ES2343599T3 (en)
WO (1) WO2008067999A1 (en)

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JP5263977B2 (en) 2013-08-14
EP2100478A1 (en) 2009-09-16
JP2010511981A (en) 2010-04-15
ATE463143T1 (en) 2010-04-15
US20090250454A1 (en) 2009-10-08
ES2343599T3 (en) 2010-08-04
WO2008067999A1 (en) 2008-06-12
DE102006058874A1 (en) 2008-06-19
DE502007003364D1 (en) 2010-05-12

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