EP2270821B1 - Wind energy system with a converter and at least one high performance resistor - Google Patents
Wind energy system with a converter and at least one high performance resistor Download PDFInfo
- Publication number
- EP2270821B1 EP2270821B1 EP10185934.6A EP10185934A EP2270821B1 EP 2270821 B1 EP2270821 B1 EP 2270821B1 EP 10185934 A EP10185934 A EP 10185934A EP 2270821 B1 EP2270821 B1 EP 2270821B1
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- resistor
- connection
- wind power
- power installation
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01C—RESISTORS
- H01C1/00—Details
- H01C1/16—Resistor networks not otherwise provided for
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01C—RESISTORS
- H01C3/00—Non-adjustable metal resistors made of wire or ribbon, e.g. coiled, woven or formed as grids
- H01C3/10—Non-adjustable metal resistors made of wire or ribbon, e.g. coiled, woven or formed as grids the resistive element having zig-zag or sinusoidal configuration
Definitions
- the present invention relates to a wind turbine with an inverter and at least one high-power resistor.
- Fig. 5 simplified and in Fig. 6 shown in sections
- different connections are provided depending on the placement of a resistor element within the resistor.
- the two outer elements one of which is in Fig. 6 can be seen, have a straight connection and a once folded, substantially rectangular bent connection.
- the remaining resistance elements have two connection lugs, each bent once at right angles, but which are bent in opposite directions.
- a starting and an end element 12, 13 and a predeterminable number of right and left intermediate elements 10, 11. While the intermediate elements 10, 11 are formed with two connections bent in opposite directions, the starting and ending elements Element 12, 13 each have a straight terminal for connection to a circuit, and a right-angled terminal for connection with an adjacent resistance element. Depending on the installation situation, the bent connection is bent to the left or to the right.
- adjacent resistance elements are connected to each other at the right angles bent terminals, resulting from the length of the bent portion of the distance of the adjacent resistance elements to each other. Therefore compete as compact a design (without taking into account thermal aspects) and a montage friendly arrangement of the resistance elements together.
- the distance between adjacent resistance elements in the interest of a compact design should be as low as possible, but on the other hand, a larger distance between adjacent resistance elements is easier to install than a smaller one.
- DE 10 206 828 shows a wind turbine with a converter and a load resistor.
- US 5,159,310 shows a special load resistance.
- US 2,647,978 shows a high-power resistor with a plurality of electrically connected in series resistive elements.
- the resistance elements are connected to each other via rods.
- a connection is provided, wherein the connection is configured at right angles to the resistance element.
- a connecting piece is attached in each case, wherein resistance elements are connected to each other by means of the connecting pieces via the rods.
- US 2,662,958 also shows a high power resistor having a plurality of resistive elements electrically connected in series.
- the resistance elements have at their two ends in each case terminals for connecting the resistor elements.
- the object of the invention is to provide a compact and easy to install high performance resistor.
- a wind turbine with a converter and at least one high-power resistor having a plurality of electrically connected in series resistive elements each having a first and a second side and a first and second end is provided, wherein at the first end a first terminal and at the second end a second terminal is provided for connecting the resistor elements, characterized in that the first and second terminal having an inner portion and an outer portion, wherein the inner portion of the first terminal in a predetermined angle with respect to the first side of the resistance element is bent and the outer portion of the first terminal lies in a plane which is substantially parallel to the plane of the resistance element, and wherein the inner portion of the second terminal at a predetermined angle relative to the second side of the resistance element is bent and the outer portion of the second terminal lies in a plane which is substantially parallel to the plane of the resistive element and wherein the high-power resistor is disposed in the vicinity of the inverter.
- the invention is based on the recognition that in the embodiment according to the invention, the distance between the terminals on one side of the resistance elements and thus the space available during assembly between adjacent terminals is doubled to twice the plate spacing.
- the assembly at the same distance of the resistive elements and thus the same size of the high-power resistor is greatly facilitated.
- the connections are offset by a predetermined amount on both sides with respect to the longitudinal axis of the resistance element.
- a high-performance resistor according to the invention can be constructed from similar standard resistance elements by suitable arrangement of the individual resistance elements.
- a high-performance resistor which can be advantageously used as a load resistor (dump load) in power generators, in particular wind turbines.
- a load resistor dump load
- several high-power resistors can be arranged in cabinets or other suitable racks, so as to achieve a dimensioning for a sufficiently large allowable power loss.
- Fig. 1 shows a perspective view of a first embodiment of a high-performance resistor according to the invention.
- This high-performance resistor consists of first resistance elements 10 and second resistance elements 11, which are arranged alternately one behind the other.
- the design of the high-power resistor shown in this figure is achieved by the resistance elements 10, 11 are threaded onto holder 20, which are designed here as a threaded rod.
- spacers 21 are provided. These spacers 21 are made of an insulating material and at the same time isolate the resistive elements 10, 11 from the holder 20. This can be done in a known manner by z. B. a short extension of a spacer with a smaller outer diameter than the visible in the Fig.
- each of the resistive elements 10, 11 engages and thus the resistance element on the (not shown) extension of the spacer 21 rests all around and thus is isolated from the holder 20.
- the isolation can also be done by one or more patch on the holder, suitable sleeves.
- the first and second resistance elements 10, 11 are configured in such a way that they each have a connection 16a, 16b at their two ends, wherein one of the connections 16a is bent towards the one side 10a and the other connection 16b is bent towards the other side 10b.
- the terminals 16a, 16b have an inner and an outer portion.
- the inner portion is bent in each case toward a first or second side of the resistance element, and the outer portion is then configured again substantially parallel to the respective resistance element. Due to the parallel configuration of the outer portion of the terminals 16a, 16b mounting of the respective resistive elements is substantially simplified.
- Fig. 2 is a plan view of a high-performance resistor according to the invention shown.
- first resistance elements 10 and second resistance elements 11 are alternately arranged and mechanically connected to one another by means of holders 20 and spacers 21.
- the adjacent resistance elements 10, 11 are connected to each other facing terminals 16 by screws. In this way, electrically results in a series connection of the individual resistance elements 10, 11.
- the two outer resistance elements have on their right in the Fig. Right side each have a free terminal 16, to which they can be connected to the electrical leads.
- Fig. 3 shows a further embodiment of a resistor element according to the invention.
- This resistor element 10 differs from that of the first embodiment by the arrangement of the terminals 16. These terminals 16 are offset by a predetermined amount d1, d2 relative to the marked longitudinal axis 25 of the resistance element 10, ie a connection is above the longitudinal axis and one is below the Longitudinal axis arranged.
- the further structure substantially corresponds to the structure in the previous embodiment.
- holder 20 and spacers 21 are provided.
- adjacent resistance elements are also connected to each other in this embodiment for establishing an electrical connection to the terminals 16 by screws. It can clearly be seen in this figure, however, that the connection 16 is located above the holder 20 in the left-hand area of the FIGURE, while the connection 16 is located in the FIG right portion of Fig. An equal dimension below the corresponding holder 20 is located.
- Fig. 4 shows a side view of a high power resistor of this second embodiment of the present invention.
- the spacers 21 which together with the holder 20, the mechanical connection of the resistive elements 10 with each other.
- the electrical connections are in turn made by screw connections to the terminals 16, the terminals 16 being free at the two outer resistance elements in order to allow the connection of electrical lines.
- the decisive difference compared to the first embodiment is that only a single resistance element 10 is needed here in order to build up a resistor according to the invention. This results from the staggered arrangement of the terminals 16 with respect to the center line of the resistor element 10. This staggered arrangement makes it possible to connect the resistor elements by a suitably oriented arrangement according to the invention to a high-power resistor.
- the resistance elements preferably all have the same or identical construction.
- the high-power resistor described above can be advantageously arranged as a load resistor in the cabinets of the power electronics of a wind turbine or in a separate rack in a wind turbine to be used as a dump load.
- the dimensioning of the high-power resistors is carried out in such a way that a sufficiently large allowable power loss can be achieved.
- the power generated by the electric generator of the wind turbine can not be delivered to a network or should not be delivered, this electrical power is dissipated in whole or in part via the high-power resistor.
- a fast power control can be done. Since such a power control is an electrical regulation, an adjustment of the pitch angle of the rotor blades of the wind energy plant is initially not absolutely necessary.
- the high-power resistor or a plurality of high-power resistors is preferably arranged in the vicinity of the inverter of the wind turbine.
- Embodiment 1 High power resistor comprising a plurality of electrically series connected resistive elements 10, 11 each having first and second sides 10a, 10b; 11a, 11b and first and second ends 10c, 10d; 11c, 11d, wherein at the first end 10c, 11c, a first terminal 16a and at the second end 10d; 11d, a second terminal 16b is provided for connecting resistor elements 10, 11, characterized in that the first and second terminals 16a, 16b each have an inner portion and an outer portion, wherein the inner portion of the first terminal 16a is bent at a predetermined angle with respect to the first side 10a, 11a of the resistive element 10, 11 and the outer portion of the first terminal 16a lies in a plane substantially parallel to the plane of the resistive element 10, 11 lies, and wherein the inner portion of the second terminal 16b is bent at a predetermined angle with respect to the second side 10b, 11b of the resistive element 10, 11 and the outer portion of the second terminal 16b lies in a plane substantially parallel to the plane of the
- Embodiment 2 High-power resistor according to embodiment 1, characterized in that the first terminal 16a is offset a first predetermined dimension d1 with respect to the longitudinal axis 25 of the resistive element 10, 11 and the second terminal 16a is displaced a second predetermined amount d2 with respect to the longitudinal axis 25 of the resistive element 10, 11 ,
- Embodiment 3 Use of at least one high-power resistor according to one of the preceding embodiments as a load resistance for a wind energy plant.
- Embodiment 4 Wind turbine with at least one high-power resistor according to one of the embodiments 1-2.
- Embodiment 5 A wind turbine according to Embodiment 4, wherein the at least one high-power resistor is used as a load resistor.
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- Engineering & Computer Science (AREA)
- Microelectronics & Electronic Packaging (AREA)
- Details Of Resistors (AREA)
- Wind Motors (AREA)
- Non-Adjustable Resistors (AREA)
- Inverter Devices (AREA)
- Power Conversion In General (AREA)
Description
Die vorliegende Erfindung betrifft eine Windenergieanlage mit einem Umrichter und wenigstens einem Hochleistungswiderstand.The present invention relates to a wind turbine with an inverter and at least one high-power resistor.
Bei bekannten Hochleistungswiderständen, wie dem in
Wie in
Da benachbarte Widerstandselemente an den rechtwinklig abgebogenen Anschlüssen miteinander verbunden werden, ergibt sich aus der Länge des abgebogenen Abschnitts der Abstand der benachbarten Widerstandselemente zueinander. Hier konkurrieren daher eine möglichst kompakte Bauform (ohne Berücksichtigung thermischer Aspekte) und eine möglichst montagefreundliche Anordnung der Widerstandselemente miteinander. Einerseits soll der Abstand zwischen benachbarten Widerstandselementen im Interesse einer kompakten Bauform möglichst gering sein, andererseits ist aber ein größerer Abstand zwischen benachbarten Widerstandselementen montagefreundlicher als ein kleinerer.Since adjacent resistance elements are connected to each other at the right angles bent terminals, resulting from the length of the bent portion of the distance of the adjacent resistance elements to each other. Therefore compete as compact a design (without taking into account thermal aspects) and a montage friendly arrangement of the resistance elements together. On the one hand, the distance between adjacent resistance elements in the interest of a compact design should be as low as possible, but on the other hand, a larger distance between adjacent resistance elements is easier to install than a smaller one.
Aufgabe der Erfindung ist es, einen kompakten und gleichzeitig montagefreundlichen Hochleistungswiderstand zu schaffen.The object of the invention is to provide a compact and easy to install high performance resistor.
Diese Aufgabe wird durch eine Windenergieanlage gemäß Anspruch 1 gelöst.This object is achieved by a wind energy plant according to claim 1.
Hierbei wird eine Windenergieanlage mit einem Umrichter und wenigstens einem Hochleistungswiderstand mit mehreren elektrisch in Reihe geschalteten Widerstandselementen jeweils mit einer ersten und einer zweiten Seite und einem ersten und zweiten Ende vorgesehen, wobei an dem ersten Ende ein erster Anschluss und an dem zweiten Ende ein zweiter Anschluss zum Verbinden der Widerstandselemente vorgesehen ist, dadurch gekennzeichnet, dass der erste und zweite Anschluss einen inneren Abschnitt und einen äußeren Abschnitt aufweist, wobei der innere Abschnitt des ersten Anschlusses in einem vorgegebenen Winkel gegenüber der ersten Seite des Widerstandselementes gebogen ist und der äußere Abschnitt des ersten Anschlusses in einer Ebene liegt, die im Wesentlichen parallel zur Ebene des Widerstandselementes liegt, und wobei der innere Abschnitt des zweiten Anschlusses in einem vorgegebenen Winkel gegenüber der zweiten Seite des Widerstandselementes gebogen ist und der äußere Abschnitt des zweiten Anschlusses in einer Ebene liegt, die im Wesentlichen parallel zur Ebene des Widerstandselementes liegt und wobei der Hochleistungswiderstand in der Nähe des Umrichters angeordnet ist.In this case, a wind turbine with a converter and at least one high-power resistor having a plurality of electrically connected in series resistive elements each having a first and a second side and a first and second end is provided, wherein at the first end a first terminal and at the second end a second terminal is provided for connecting the resistor elements, characterized in that the first and second terminal having an inner portion and an outer portion, wherein the inner portion of the first terminal in a predetermined angle with respect to the first side of the resistance element is bent and the outer portion of the first terminal lies in a plane which is substantially parallel to the plane of the resistance element, and wherein the inner portion of the second terminal at a predetermined angle relative to the second side of the resistance element is bent and the outer portion of the second terminal lies in a plane which is substantially parallel to the plane of the resistive element and wherein the high-power resistor is disposed in the vicinity of the inverter.
Dabei liegt der Erfindung die Erkenntnis zu Grunde, dass bei der erfindungsgemäßen Ausführungsform der Abstand der Anschlüsse an einer Seite der Widerstandselemente und damit der bei der Montage zur Verfügung stehende Raum zwischen benachbarten Anschlüssen sich auf das Zweifache des Plattenabstands verdoppelt. Damit wird die Montage bei gleichbleibendem Abstand der Widerstandselemente und damit gleicher Baugröße des Hochleistungswiderstandes außerordentlich erleichtert.In this case, the invention is based on the recognition that in the embodiment according to the invention, the distance between the terminals on one side of the resistance elements and thus the space available during assembly between adjacent terminals is doubled to twice the plate spacing. Thus, the assembly at the same distance of the resistive elements and thus the same size of the high-power resistor is greatly facilitated.
In einer bevorzugten Weiterbildung der Erfindung sind die Anschlüsse ein vorgegebenes Maß beidseitig gegenüber der Längsachse des Widerstandselementes versetzt. Dadurch, dass also einer der Anschlüsse ein vorgegebenes Maß oberhalb und der andere das gleiche Maß unterhalb der Längsachse ausgebildet ist, kann durch geeignete Anordnung der einzelnen Widerstandselemente ein erfindungsgemäßer Hochleistungswiderstand aus gleichartigen Standard-Widerstandselementen aufgebaut werden.In a preferred development of the invention, the connections are offset by a predetermined amount on both sides with respect to the longitudinal axis of the resistance element. By virtue of the fact that one of the connections has a predetermined dimension above and the other the same dimension below the longitudinal axis, a high-performance resistor according to the invention can be constructed from similar standard resistance elements by suitable arrangement of the individual resistance elements.
Auf die vorbeschriebene Weise wird ein Hochleistungswiderstand geschaffen, der vorteilhaft als Lastwiderstand (Dump Load) bei Energieerzeugern, insbesondere Windenergieanlagen, verwendet werden kann. Dazu können mehrere Hochleistungswiderstände in Schränken oder anderen geeigneten Gestellen angeordnet werden, um so eine Dimensionierung für eine ausreichend große zulässige Verlustleistung zu erreichen.In the manner described above, a high-performance resistor is provided, which can be advantageously used as a load resistor (dump load) in power generators, in particular wind turbines. For this purpose, several high-power resistors can be arranged in cabinets or other suitable racks, so as to achieve a dimensioning for a sufficiently large allowable power loss.
Nachfolgend wird die Erfindung anhand der Fig. näher erläutert. Dabei zeigen:
- Fig. 1
- eine perspektivische Darstellung einer ersten Ausführungsform eines erfindungs- gemäßen Hochleistungswiderstandes;
- Fig. 2
- eine Draufsicht auf den in
Fig. 1 dargestellten Hochleistungswiderstand; - Fig. 3
- eine Vorderansicht einer zweiten Ausführungsform eines erfindungsgemäßen Hochleistungswiderstandes;
- Fig. 4
- eine perspektivische Seitenansicht des in
Fig. 3 dargestellten Hochleistungswi- derstandes; - Fig. 5
- eine vereinfachte Draufsicht auf einen bekannten Hochleistungswiderstand; und
- Fig. 6
- Einzelheiten des bekannten Hochleistungswiderstandes.
- Fig. 1
- a perspective view of a first embodiment of a high-performance resistor according to the invention;
- Fig. 2
- a top view of the in
Fig. 1 illustrated high power resistor; - Fig. 3
- a front view of a second embodiment of a high-power resistor according to the invention;
- Fig. 4
- a side perspective view of the
Fig. 3 high performance resistance; - Fig. 5
- a simplified plan view of a known high-power resistor; and
- Fig. 6
- Details of the known high power resistor.
Die elektrische Verbindung der Widerstandselemente 10, 11 untereinander erfolgt mittels Schraubverbindungen an den Anschlüssen 16, wobei auch andere elektrisch leitende Verbindungen möglich sind. Gut zu erkennen ist dies bei dem vordersten Widerstandselement 10. Rechts im Bild ist ein Anschluss 16 frei. Dieser dient dem elektrischen Anschluss des Hochleistungswiderstandes. Hier können also auf einfache Weise z. B. Kabel oder andere, geeignete Gegenstücke angeschlossen werden. Der linke Anschluss 16 dieses vorderen Widerstandselementes 10 ist mittels zweier Schrauben 23 mit dem entsprechenden Anschluss des nachfolgenden Widerstandselementes 11 verbunden. Die Verbindung der einzelnen Widerstandselemente 10, 11 untereinander zu dem erfindungsgemäßen Hochleistungswiderstand ist in
Die ersten und zweiten Widerstandselemente 10, 11 sind dabei derart ausgestaltet, dass sie an ihren beiden Enden jeweils einen Anschluss 16a, 16b aufweisen, wobei einer der Anschlüsse 16a zur einen Seite 10a und der andere Anschluss 16b zur anderen Seite 10b hin gebogen ist. Vorzugsweise weisen die Anschlüsse 16a, 16b einen inneren und einen äußeren Abschnitt auf. Hierbei ist der innere Abschnitt jeweils zu einer ersten oder zweiten Seite des Widerstandselementes hin gebogen, und der äußere Abschnitt ist dann wieder im Wesentlichen parallel zu dem jeweiligen Widerstandselement ausgestaltet. Durch die parallele Ausgestaltung des äußeren Abschnittes der Anschlüsse 16a, 16b wird eine Montage der jeweiligen Widerstandselemente wesentlich vereinfacht.The first and
In dieser
In dieser
Der entscheidende Unterschied gegenüber der ersten Ausführungsform liegt darin, dass hier nur noch ein einziges Widerstandselement 10 benötigt wird, um einen erfindungsgemäßen Widerstand aufzubauen. Dies ergibt sich aus der versetzten Anordnung der Anschlüsse 16 gegenüber der Mittellinie des Widerstandselementes 10. Diese versetzte Anordnung erlaubt es, die Widerstandselemente durch eine geeignet ausgerichtete Anordnung erfindungsgemäß zu einem Hochleistungswiderstand zu verbinden.The decisive difference compared to the first embodiment is that only a
Wie oben beschrieben, werden gemäß der Erfindung vorzugsweise flächige Widerstandselemente vorgesehen. Die Widerstandselemente weisen vorzugsweise alle den gleichen bzw. identischen Aufbau auf. Der oben beschriebene Hochleistungswiderstand kann vorteilhafterweise als ein Lastwiderstand in den Schränken der Leistungselektronik einer Windenergieanlage oder in einem gesonderten Gestell in einer Windenergieanlage angeordnet werden, um als Dump Load verwendet zu werden. Die Dimensionierung der Hochleistungswiderstände erfolgt dabei derart, dass eine ausreichend große zulässige Verlustleistung erreicht werden kann.As described above, according to the invention preferably flat resistive elements are provided. The resistance elements preferably all have the same or identical construction. The high-power resistor described above can be advantageously arranged as a load resistor in the cabinets of the power electronics of a wind turbine or in a separate rack in a wind turbine to be used as a dump load. The dimensioning of the high-power resistors is carried out in such a way that a sufficiently large allowable power loss can be achieved.
Wenn die von dem elektrischen Generator der Windenergieanlage erzeugte Leistung nicht an ein Netz abgegeben werden kann bzw. nicht abgegeben werden soll, wird diese elektrische Leistung ganz bzw. teilweise über den Hochleistungswiderstand abgeführt. Somit kann eine schnelle Leistungsregelung erfolgen. Da es sich bei einer derartigen Leistungsregelung um eine elektrische Regelung handelt, ist ein Verstellen des Pitchwinkels der Rotorblätter der Windenergieanlage zunächst nicht unbedingt erforderlich.If the power generated by the electric generator of the wind turbine can not be delivered to a network or should not be delivered, this electrical power is dissipated in whole or in part via the high-power resistor. Thus, a fast power control can be done. Since such a power control is an electrical regulation, an adjustment of the pitch angle of the rotor blades of the wind energy plant is initially not absolutely necessary.
Der Hochleistungswiderstand bzw. eine Vielzahl von Hochleistungswiderständen wird vorzugsweise in Nähe des Umrichters der Windenergieanlage angeordnet.The high-power resistor or a plurality of high-power resistors is preferably arranged in the vicinity of the inverter of the wind turbine.
Ausführungsform 1 Hochleistungswiderstand, mit mehreren elektrisch in Reihe geschalteten Widerstandselementen 10, 11 jeweils mit einer ersten und einer zweiten Seite 10a, 10b; 11a, 11b und einem ersten und zweiten Ende 10c, 10d; 11c, 11d, wobei an dem ersten Ende 10c, 11c ein erster Anschluss 16a und an dem zweiten Ende 10d; 11d ein zweiter Anschluss 16b zum Verbinden von Widerstandselementen 10, 11 vorgesehen ist, dadurch gekennzeichnet, dass der erste und zweite Anschluss 16a, 16b jeweils einen inneren Abschnitt und einen äußeren Abschnitt aufweist,
wobei der innere Abschnitt des ersten Anschlusses 16a in einem vorgegebenen Winkel gegenüber der ersten Seite 10a, 11a des Widerstandselementes 10, 11 gebogen ist und der äußere Abschnitt des ersten Anschlusses 16a in einer Ebene liegt, die im Wesentlichen parallel zur Ebene des Widerstandselementes 10, 11 liegt, und
wobei der innere Abschnitt des zweiten Anschlusses 16b in einem vorgegebenen Winkel gegenüber der zweiten Seite 10b, 11b des Widerstandselementes 10, 11 gebogen ist und der äußere Abschnitt des zweiten Anschlusses 16b in einer Ebene liegt, die im Wesentlichen parallel zur Ebene des Widerstandselementes 10, 11 liegt.Embodiment 1 High power resistor comprising a plurality of electrically series connected
wherein the inner portion of the
wherein the inner portion of the
Ausführungsform 2 Hochleistungswiderstand nach Ausführungsform 1, dadurch gekennzeichnet, dass der erste Anschluss 16a ein erstes vorgegebenes Maß d1 gegenüber der Längsachse 25 des Widerstandselementes 10, 11 und der zweite Anschluss 16a ein zweites vorgegebenes Maß d2 gegenüber der Längsachse 25 des Widerstandselementes 10, 11 versetzt ist.Embodiment 2 High-power resistor according to embodiment 1, characterized in that the
Ausführungsform 3 Verwendung wenigstens eines Hochleistungswiderstandes nach einer der vorstehenden Ausführungsformen als Lastwiderstand für eine Windenergieanlage.Embodiment 3 Use of at least one high-power resistor according to one of the preceding embodiments as a load resistance for a wind energy plant.
Ausführungsform 4 Windenergieanlage mit mindestens einem Hochleistungswiderstand nach einer der Ausführungsformen 1-2.Embodiment 4 Wind turbine with at least one high-power resistor according to one of the embodiments 1-2.
Ausführungsform 5 Windenergieanlage nach Ausführungsform 4, wobei der mindestens eine Hochleistungswiderstand als ein Lastwiderstand verwendet wird.Embodiment 5 A wind turbine according to Embodiment 4, wherein the at least one high-power resistor is used as a load resistor.
Claims (5)
- A wind power installation having a converter and at least one high-performance resistor comprising a plurality of resistor elements (10, 11) electrically connected in series and each having a first and a second side (10a, 10b; 11a, 11b) and a first and a second end (10c, 10d; 11c, 11d), there being provided at the first end (10c, 11c) a first connection (16a) and at the second end (10d; 11d) a second connection (16b) for connection of resistor elements (10, 11), characterised in that the first and second connections (16a, 16b) each have an inner portion and an outer portion,
wherein the inner portion of the first connection (16a) is bent at a predefined angle to the first side (10a, 11 a) of the resistor element (10, 11) and the outer portion of the first connection (16a) lies in a plane that is substantially parallel to the plane of the resistor element (10, 11), and
wherein the inner portion of the second connection (16b) is bent at a predefined angle to the second side (10b, 11 b) of the resistor element (10, 11) and the outer portion of the second connection (16b) lies in a plane that is substantially parallel to the plane of the resistor element (10, 11), and wherein the high-performance resistor is disposed in the vicinity of the converter,
wherein the first connection (16a) is offset from the longitudinal axis (25) of the resistor element (10, 11) by a first predefined extent (d1) and the second connection (16a) is offset from the longitudinal axis (25) of the resistor element (10, 11) by a second predefined extent (d2),
wherein the first extent (d1) corresponds to the second extent (d2) and the first and second connections are offset in the opposite direction to the longitudinal axis. - A wind power installation according to claim 1,
characterised in that the wind power installation has an electric generator and that, when the power generated by the electric generator of the wind power installation cannot be or is not to be delivered to a grid, that electrical power is entirely or partially dissipated by way of the high-performance resistor. - A wind power installation according to claim 2,
characterised in that the dissipation of electrical power by way of the high-performance resistor provides an electrical regulation which makes adjustment of the pitch angle of the rotor blades of the wind power installation unnecessary. - A wind power installation according to any one of the preceding claims,
characterised in that the at least one high-performance resistor is used as a load resistor. - A wind power installation according to any one of the preceding claims,
characterised in that a plurality of high-performance resistors are disposed in cabinets or other suitable racks.
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PL10185934T PL2270821T3 (en) | 2004-07-09 | 2005-07-08 | Wind energy system with a converter and at least one high performance resistor |
SI200531815T SI2270821T1 (en) | 2004-07-09 | 2005-07-08 | Wind energy system with a converter and at least one high performance resistor |
CY20141100059T CY1114779T1 (en) | 2004-07-09 | 2014-01-24 | WIND ENERGY INSTALLATION WITH A REVERSE AND ATTACHMENT WITH A HIGH PERFORMANCE |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102004033680A DE102004033680B4 (en) | 2004-07-09 | 2004-07-09 | load resistance |
EP05770177.3A EP1769514B1 (en) | 2004-07-09 | 2005-07-08 | High performance load resistor |
Related Parent Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP05770177.3A Division-Into EP1769514B1 (en) | 2004-07-09 | 2005-07-08 | High performance load resistor |
EP05770177.3 Division | 2005-07-08 |
Publications (3)
Publication Number | Publication Date |
---|---|
EP2270821A2 EP2270821A2 (en) | 2011-01-05 |
EP2270821A3 EP2270821A3 (en) | 2012-08-15 |
EP2270821B1 true EP2270821B1 (en) | 2013-11-27 |
Family
ID=35004357
Family Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP05770177.3A Active EP1769514B1 (en) | 2004-07-09 | 2005-07-08 | High performance load resistor |
EP10185934.6A Active EP2270821B1 (en) | 2004-07-09 | 2005-07-08 | Wind energy system with a converter and at least one high performance resistor |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP05770177.3A Active EP1769514B1 (en) | 2004-07-09 | 2005-07-08 | High performance load resistor |
Country Status (19)
Country | Link |
---|---|
US (1) | US7932808B2 (en) |
EP (2) | EP1769514B1 (en) |
JP (1) | JP4550114B2 (en) |
KR (1) | KR100848040B1 (en) |
CN (1) | CN1981350B (en) |
AR (1) | AR049971A1 (en) |
AU (1) | AU2005261893B2 (en) |
BR (1) | BRPI0513031A (en) |
CA (1) | CA2571524C (en) |
CY (1) | CY1114779T1 (en) |
DE (1) | DE102004033680B4 (en) |
DK (2) | DK2270821T3 (en) |
ES (2) | ES2605408T3 (en) |
HU (1) | HUE032382T2 (en) |
NZ (1) | NZ552448A (en) |
PL (2) | PL1769514T3 (en) |
PT (2) | PT1769514T (en) |
SI (1) | SI2270821T1 (en) |
WO (1) | WO2006005542A1 (en) |
Families Citing this family (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
ES2341820B1 (en) * | 2007-01-31 | 2011-05-13 | GAMESA INNOVATION & TECHNOLOGY, S.L. | A METHOD TO ELIMINATE THE IMPACT OF BACKWARDS ON THE MULTIPLIER OF AN AEROGENERATOR. |
US8242878B2 (en) * | 2008-09-05 | 2012-08-14 | Vishay Dale Electronics, Inc. | Resistor and method for making same |
DE102009036227B4 (en) * | 2009-08-05 | 2015-02-05 | Abb Ag | Electrical resistance, process for its manufacture and electrical switching installation device |
DE102010053389A1 (en) | 2010-12-03 | 2012-06-06 | Vishay Electronic Gmbh | Electrical power resistor |
US8692647B2 (en) * | 2011-12-15 | 2014-04-08 | Caterpillar Inc. | Resistor grid assembly |
DE202012100521U1 (en) | 2012-02-16 | 2012-04-26 | Jovyatlas Elektrische Umformtechnik GmbH | load resistance |
DE202012010188U1 (en) | 2012-10-24 | 2012-11-12 | Frizlen GmbH & Co. KG | load resistance |
CN114334313B (en) * | 2021-12-30 | 2024-04-05 | 广东福德电子有限公司 | High-power resistor with bone-shaped resistor strip |
Family Cites Families (13)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR770317A (en) * | 1933-06-06 | 1934-09-12 | Forges Ateliers Const Electr | Improvement in electric resistances of the grid type |
FR1013067A (en) * | 1950-02-20 | 1952-07-22 | Rheostatic Co Ltd | Electric resistors |
US2647978A (en) * | 1951-08-11 | 1953-08-04 | Electric Controller & Mfg Co | Resistance unit and element thereof |
US2725448A (en) * | 1953-06-19 | 1955-11-29 | Westinghouse Electric Corp | Resistance apparatus |
JPS52165248U (en) * | 1976-06-10 | 1977-12-14 | ||
US4654627A (en) * | 1985-05-23 | 1987-03-31 | Dynamic Corporation | Resistor grid assembly |
US5159310A (en) * | 1990-01-16 | 1992-10-27 | Mosebach Manufacturing Company | Resistor grid heat dissipating assembly |
US5304978A (en) | 1992-08-10 | 1994-04-19 | Mosebach Manufacturing Company | Resistor grid assembly having "U" bend resistor elements |
FR2718584B1 (en) * | 1994-04-08 | 1996-05-31 | Thomcast | Air-cooled power load and dummy antenna formed by such a load. |
DE29506779U1 (en) * | 1994-11-30 | 1996-04-04 | Siemens AG, 80333 München | Resistance device |
JP3110996B2 (en) * | 1995-09-28 | 2000-11-20 | 愛知電機株式会社 | Neutral point ground resistance device |
US5917404A (en) * | 1997-01-13 | 1999-06-29 | Ipc Resistors, Inc. | Power resistor |
DE10206828A1 (en) * | 2002-01-29 | 2003-08-14 | Lorenz Feddersen | Circuit arrangement for use in a wind turbine |
-
2004
- 2004-07-09 DE DE102004033680A patent/DE102004033680B4/en not_active Expired - Fee Related
-
2005
- 2005-07-08 EP EP05770177.3A patent/EP1769514B1/en active Active
- 2005-07-08 KR KR1020077002836A patent/KR100848040B1/en active IP Right Grant
- 2005-07-08 WO PCT/EP2005/007419 patent/WO2006005542A1/en active Application Filing
- 2005-07-08 PL PL05770177T patent/PL1769514T3/en unknown
- 2005-07-08 CA CA002571524A patent/CA2571524C/en active Active
- 2005-07-08 ES ES05770177.3T patent/ES2605408T3/en active Active
- 2005-07-08 AU AU2005261893A patent/AU2005261893B2/en not_active Ceased
- 2005-07-08 SI SI200531815T patent/SI2270821T1/en unknown
- 2005-07-08 HU HUE05770177A patent/HUE032382T2/en unknown
- 2005-07-08 PL PL10185934T patent/PL2270821T3/en unknown
- 2005-07-08 NZ NZ552448A patent/NZ552448A/en not_active IP Right Cessation
- 2005-07-08 AR ARP050102835A patent/AR049971A1/en not_active Application Discontinuation
- 2005-07-08 BR BRPI0513031-0A patent/BRPI0513031A/en active IP Right Grant
- 2005-07-08 PT PT57701773T patent/PT1769514T/en unknown
- 2005-07-08 ES ES10185934.6T patent/ES2442591T3/en active Active
- 2005-07-08 DK DK10185934.6T patent/DK2270821T3/en active
- 2005-07-08 US US11/632,101 patent/US7932808B2/en active Active
- 2005-07-08 EP EP10185934.6A patent/EP2270821B1/en active Active
- 2005-07-08 JP JP2007518559A patent/JP4550114B2/en not_active Expired - Fee Related
- 2005-07-08 PT PT101859346T patent/PT2270821E/en unknown
- 2005-07-08 DK DK05770177.3T patent/DK1769514T3/en active
- 2005-07-08 CN CN2005800228290A patent/CN1981350B/en active Active
-
2014
- 2014-01-24 CY CY20141100059T patent/CY1114779T1/en unknown
Also Published As
Publication number | Publication date |
---|---|
ES2605408T3 (en) | 2017-03-14 |
DK1769514T3 (en) | 2017-01-02 |
US7932808B2 (en) | 2011-04-26 |
PT2270821E (en) | 2013-12-27 |
EP2270821A3 (en) | 2012-08-15 |
EP1769514A1 (en) | 2007-04-04 |
PL2270821T3 (en) | 2014-04-30 |
DE102004033680A1 (en) | 2006-01-26 |
HUE032382T2 (en) | 2017-09-28 |
KR100848040B1 (en) | 2008-07-23 |
JP4550114B2 (en) | 2010-09-22 |
KR20070029286A (en) | 2007-03-13 |
AU2005261893A1 (en) | 2006-01-19 |
DK2270821T3 (en) | 2013-12-09 |
ES2442591T3 (en) | 2014-02-12 |
PL1769514T3 (en) | 2017-05-31 |
NZ552448A (en) | 2009-08-28 |
CN1981350B (en) | 2011-04-20 |
PT1769514T (en) | 2016-12-30 |
CA2571524A1 (en) | 2006-01-19 |
BRPI0513031A (en) | 2008-04-22 |
EP2270821A2 (en) | 2011-01-05 |
WO2006005542A1 (en) | 2006-01-19 |
CA2571524C (en) | 2009-11-10 |
DE102004033680B4 (en) | 2009-03-12 |
CN1981350A (en) | 2007-06-13 |
JP2008504702A (en) | 2008-02-14 |
EP1769514B1 (en) | 2016-09-21 |
CY1114779T1 (en) | 2016-12-14 |
AR049971A1 (en) | 2006-09-20 |
SI2270821T1 (en) | 2014-02-28 |
US20080191836A1 (en) | 2008-08-14 |
AU2005261893B2 (en) | 2009-10-01 |
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