Flexible DC power transmission system fault ride-through voltage margin control method and device
A power transmission system, flexible DC technology, applied in the direction of circuit devices, emergency treatment AC circuit layout, AC network circuit, etc., can solve the problems of hindering reference value, large fluctuation of flexible DC transmission system, long fault recovery time, etc., to avoid severe Shock, shortening fault recovery time, reducing the effects of fluctuations
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Embodiment 1
[0082] Embodiment 1 of the present invention provides a method for controlling the fault ride-through voltage margin of a flexible DC transmission system. One end of the flexible DC transmission system in Embodiment 1 of the present invention is connected to a passive AC system. During the recovery process of the passive AC system after elimination, the control of the flexible DC transmission system can be dynamically optimized in real time to adapt to the disturbance of the passive AC system, and the AC transient process can be smoothly passed through, avoiding the severe impact of the flexible DC transmission system, and ensuring that the passive DC transmission system During the transient fault of the AC system and the safe operation of the flexible DC transmission system at both ends during the fault recovery process, the DC control characteristics can be dynamically adjusted according to the fault characteristics to achieve AC fault ride-through. The concrete flowchart of ...
Embodiment 2
[0113] Based on the same inventive concept, Embodiment 2 of the present invention also provides a fault ride-through voltage margin control device for a flexible direct current transmission system, such as Figure 12 shown, including:
[0114] The first determining module is configured to determine the rate of change of the outer loop current limit value at the constant DC voltage terminal and the rate of change of the outer loop current limit value at the constant frequency control terminal based on the AC bus voltage at the constant DC voltage terminal and the AC bus voltage at the constant frequency control terminal, respectively. ;
[0115] The second determining module is used to determine the constant DC voltage terminal amplitude limit value and the constant frequency control terminal limit based on the rate of change of the outer loop current limit value at the constant DC voltage terminal and the rate of change of the outer loop current limit value at the constant fre...
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