Control method and device of high voltage ride through for wind power converter based on hysteresis control
A wind power converter, hysteresis control technology, applied in circuit devices, AC network voltage adjustment, wind power generation and other directions, can solve the problem of high voltage faults that cannot ride through, and achieve high voltage fault ride-through, simple control, and DC suppression. The effect of bus voltage swell
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Embodiment 1
[0048] A wind power converter high voltage ride through control method based on hysteresis control, characterized in that:
[0049] Specific steps are as follows:
[0050] Measure the three-phase voltage of the power grid in real time, separate the positive and negative sequence voltages of the power grid, and calculate the per unit value of the positive sequence voltage of the power grid;
[0051] Compare the positive sequence voltage per unit value with the high voltage threshold of the power grid. The high voltage threshold of the power grid is determined according to relevant national standards and system design indicators. If it is lower than the high voltage threshold, the grid-connected reactive power of the full power converter comes from the main control unit of the unit. And update and record the given active current value at this time; if the positive sequence voltage per unit value is higher than the high voltage threshold, calculate the given reactive current valu...
Embodiment 2
[0058] A wind power converter high voltage ride through control method based on hysteresis control, characterized in that:
[0059] Specific steps are as follows:
[0060] Measure the three-phase voltage of the power grid in real time, separate the positive and negative sequence voltages of the power grid, and calculate the per unit value of the positive sequence voltage of the power grid;
[0061] Compare the positive sequence voltage per unit value with the high voltage threshold of the power grid. The high voltage threshold of the power grid is determined according to relevant national standards and system design indicators. If it is lower than the high voltage threshold, the grid-connected reactive power of the full power converter comes from the main control unit of the unit. And update and record the given active current value at this time; if the positive sequence voltage per unit value is higher than the high voltage threshold, calculate the given reactive current valu...
Embodiment 3
[0084] A wind power converter high-voltage ride-through device based on hysteresis current control, characterized in that it includes: a signal detection unit, a system control unit, a hysteresis control unit and a chopper control unit, the system control unit and the chopper control unit, The signal detection unit and the hysteresis current control unit are connected through hard wiring to transmit the believed control signal. The signal detection unit is connected with the chopper control unit, the hysteresis current control unit and the system control unit through hard wiring, and is used to transmit the collected signal to each control unit. The chopper control unit is connected with the DC bus chopper circuit through hard wiring.
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