A lcc‑hvdc topology with controllable submodules in series
A LCC-HVDC, topology technology, applied in the direction of power transmission AC network, etc., can solve the problems of current harmonic pollution, loss of self-recovery ability of converter, deterioration of inverter commutation performance, etc., to prolong the service life , the investment and withdrawal are flexible and controllable, and the effect of improving stability
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2017-04-12
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Abstract
Description
technical field
[0001] The invention relates to a device in the technical field of power transmission and distribution, in particular to an LCC-HVDC topology structure connected in series with controllable sub-modules. Background technique
[0002] Line-Commutated-Converter High Voltage Direct Current (LCC-HVDC) has been widely used in the world due to its advantages in long-distance large-capacity power transmission and fast active power control; however, due to its As a commutation device, the thyristor, which cannot be turned off automatically, needs a certain strength of the AC system to provide the commutation voltage, which has certain limitations, especially the problem of commutation failure.
[0003] At the end of the commutation process, if the valve that has just exited conduction fails to recover the forward voltage blocking capability within a period of time when the reverse voltage is applied, or the commutation process fails to end, the voltage will be commuta...
Examples
Embodiment Construction
[0040] The specific embodiments of the present invention will be further described in detail below in conjunction with the accompanying drawings.
[0041] The invention provides an LCC-HVDC topology structure with controllable sub-modules connected in series. pressure circuit. The controllable sub-module includes a capacitor and a sequentially connected device group consisting of a diode and an IGBT.
[0042] The number of the above device groups is two; the numbers of diodes and IGBTs are one respectively. The collector of the IGBT of the device group 1 of the device group is connected to the anode of the diode; the emitter of the IGBT of the device group 2 of the device group is connected to the cathode of the diode; the cathode of the diode of the device group 1 is connected to the collector of the IGBT of the device group 2 Connection; the anode of the diode of the device group 2 is connected to the emitter of the IGBT of the device group 1; the anode and the cathode of ...