IL226447A

Electric device and method for a wave power plant

Abstract

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Term

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21 claims: 10 independent, 11 dependent

  1. 1
    ί - 10- 226447/2 CLAIMS:1. An electric device including a winding, means for inducing a current in the winding and an electrical bridge circuit, wherein the electrical bridge circuit includes capacitor means having a capacitance adapted for obtaining resonance with the inductance of the winding, wherein the bridge circuit (400) includes a first (407) and a second (408) branch connected to an electric load (13), the first branch (407) having a first capacitor (401) and a first semiconductor (403), the second branch (408) having a second capacitor (402) and a second semiconductor (404), the winding (12) being connected to the first branch (407) between the first capacitor (401) and the first semiconductor (403) and to the second branch (408) between the second capacitor (402) and the second semiconductor (404) and whereby the first capacitor (401) and the second semiconductor (404) is connected to the load (13) via a third semiconductor (405), and the first semiconductor (403) and the second capacitor (402) is connected to the load (13) via a fourth semiconductor (406).
  2. 4
    An electric device according to any of claims 1-3, wherein the semiconductors include one or more insulated gate bipolar transistors (IGBTs).
  3. 5
    An electric device including a winding, means for inducing a current in the winding and an electrical bridge circuit, wherein the electrical bridge circuit includes capacitor means having a capacitance adapted for obtaining resonance with the inductance of the winding, wherein the bridge circuit (300) includes an IGBT (304) via which the winding (12) is connected to an electric load (13), and further includes a first branch (305) in parallel to the IGBT (304) and a second branch (306) in parallel to the winding (12), which first (305) and second branch (306) each includes a capacitor (301, 302) and whereby a semiconductor (303) is located between the first (305) and the second (306) branch.
  4. 8
    An electric device according to any of claims 5-7, wherein the semiconductors include one or more insulated gate bipolar transistors (IGBTs).
  5. 9
    An electric device according to any of claims 1-8, wherein the winding (12) is a 5 multi-phase winding.
  6. 11
    An electric device according to any of claims 1-10, wherein the bridge is connected to an electric load.
  7. 12
    An electric device according to any of claims 1-11, wherein the electric device includes a transformer, a generator and/or a HVDC-cable.
  8. 18
    An electric network, wherein the electric network includes at least one electric device according to any of claims 14-16. - 12- 226447/2
  9. 19
    A use of an electric device according to any of claims 1 -16, wherein the electric device is used for producing electric energy and supplying the energy to an electric network.
  10. 20
    A method for controlling an electric winding in which winding a current is induced, by connecting the winding to an electric bridge including capacitor means, and adapting the 5 capacitance of the capacitor means to obtain resonance with the inductance of the winding, wherein the bridge circuit (400) including a first (407) and a second (408) branch connected to an electric load (13), the first branch (407) having a first capacitor (401) and a first semiconductor (403), the second branch (408) having a second capacitor (402) and a second semiconductor (404), the winding (12) being connected to the first branch (407) 10 between the first capacitor (401) and the first semiconductor (403) and to the second branch (408) between the second capacitor (402) and the second semiconductor (404) and whereby the first capacitor (401) and the second semiconductor (404) is connected to the load (13) via a third semiconductor (405), and the first semiconductor (403) and the second capacitor (402) is connected to the load (13) via a fourth semiconductor 406). 15 21. A method for controlling an electric winding in which winding a current is induced, by connecting the winding to an electric bridge including capacitor means, and adapting the capacitance ofthe capacitor means to obtain resonance with the inductance ofthe winding, wherein the bridge circuit (300) including an IGBT (304) via which the winding (12) is connected to an electric load (13), and further includes a first branch (305) in parallel to the 20 IGBT (304) and a second branch (306) in parallel to the winding (12), which first (305) and second branch (306) each includes a capacitor (301, 302) and whereby a semiconductor (303) is located between the first (305) and the second (306) branch.