IP Library Granted Patent US 9,831,758
Granted Patent B2
US 9,831,758 · App. 15/112,585 · Granted Nov 28, 2017

Master/slave controller system in ring topology for modular multilevel converters

Inventors: Tormod Wien (Asker, NO); Anne Vallestad (Sandvika, NO); Dalimir Orfanus (Nesøya, NO); Harald Vefling (Nøtterøy, NO); Reidar Indergaard (Kolsås, NO)
Assignee: ABB SCHWEIZ AG
H02M1/088H02M1/08H02M1/0845H02M7/483H04L12/4637H02M2007/4835
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Quick Facts
Patent No.
US 9,831,758
App. No.
15/112,585
Granted
Nov 28, 2017
Kind
B2
Abstract

A power electronic converter for converting electric energy and a method for controlling a power electronic converter are disclosed. The converter includes a plurality of PE switches, and a control system adapted to transmit control information to the PE switches. The control system includes a master controller and a plurality of local controllers controlling the PE switches. The control system further includes one or more slave devices controlled by the master controller. The control system is configured so that the master controller and the one or more slave devices are connected in a ring network topology. Each slave device and one or more of the local controllers are connected in a star network topology.

Claims (20)

1. A power electronic converter for converting electric energy, the converter comprising: a plurality of cells, each of the plurality of cells including a plurality of power electronic (PE) switches; and a control system adapted to transmit control information to the plurality of PE switches so that the PE switches are switched in a synchronized manner, wherein the control system comprises: a master controller; a plurality of local controllers, each of the plurality of local controllers for controlling the PE switches of one or more of the plurality of cells; and a plurality of slave devices controlled by the master controller, wherein the control system is configured so that the master controller and the plurality of slave devices are connected in a ring network topology, and each slave device connects a plurality of the local controllers in a star network topology.

2. The power electronic converter according to claim 1 , wherein the slave devices are configured to control and communicate with the connected local controllers by means of wireless communication.

3. The power electronic converter according to claim 2 , wherein the one or more local controllers and their PE switches are combined to one or more building blocks in the converter.

4. The power electronic converter according to claim 2 , wherein the master controller comprises means for transmitting control information in both directions of the ring network.

5. The power electronic converter according to claim 2 , wherein the communication in the ring network is based on an Ethernet protocol.

6. The power electronic converter according to claim 2 , wherein the ring network comprises one or more Ethernet rings.

7. The power electronic converter according to claim 1 , wherein the one or more local controllers and their PE switches are combined to one or more building blocks in the converter.

8. The power electronic converter according to claim 7 , wherein the master controller comprises means for transmitting control information in both directions of the ring network.

9. The power electronic converter according to claim 7 , wherein the communication in the ring network is based on an Ethernet protocol.

10. The power electronic converter according to claim 7 , wherein the ring network comprises one or more Ethernet rings.

11. The power electronic converter according to claim 1 , wherein the master controller comprises means for transmitting control information in both directions of the ring network.

12. The power electronic converter according to claim 11 , wherein the communication in the ring network is based on an Ethernet protocol.

13. The power electronic converter according to claim 1 , wherein the communication in the ring network is based on an Ethernet protocol.

14. The power electronic converter according to claim 1 , wherein the ring network comprises one or more Ethernet rings.

15. The power electronic converter according to claim 14 , wherein at least one of the one or more Ethernet rings is redundant.

16. The power electronic converter according to claim 1 , wherein the PE switches are IGBT switches or IGCT switches.

17. The power electronic converter according to claim 1 , wherein the control system is configured to provide time synchronization between the one or more slave devices and the local controllers.

18. A method for controlling the power electronic converter according to claim 1 , the method comprises: transmitting control information from the master controller to the one or more slave devices; transmitting control information from each slave device to connected local controllers; and transmitting control information from each local controller to a designated PE switch.

19. The method according to claim 18 , further comprising: receiving information on a current state of the converter and properties of power to be converted; determining a new state of the converter on a basis of the current state of the converter and properties of the power to be converted; and adjusting the control information to the plurality of PE switches so that the current state of the converter is changed to the new state.

20. The method according to claim 19 , wherein the information on the current state of the converter comprises status information of the PE switches, the method further comprising transmitting the status information from the PE switches through the local controllers and the slave devices to the master controller.

Assignments (2)
MERGER Recorded Jul 21, 2016
From: ABB TECHNOLOGY LTD
To: ABB SCHWEIZ AG
Reel/Frame 039214/0097 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2016
From: WIEN, TORMOD; VALLESTAD, ANNE; ORFANUS, DALIMIR; VEFLING, HARALD; INDERGAARD, REIDAR
To: ABB TECHNOLOGY LTD
Reel/Frame 039405/0923 →
Priority Claims (1)
EP 14151739 · Jan 20, 2014 · regional
Continuity (1)
Related Publication 20160352208A1 · Dec 1, 2016