Method applied in alternating current/direct current large power grid transient analysis of imitating direct current response
A transient analysis, AC and DC technology, applied in the direction of electrical components, etc., can solve the problems of slow simulation speed, inaccurate simulation of commutation process and power change, analysis error of transient stability of AC and DC interconnected large power grid, etc., to achieve accurate The effect of high precision, fast calculation speed and simple operation
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Embodiment 1
[0028] Step S3: When the fault in the electromechanical transient simulation prevents the bus voltage of the inverter station from dropping below 90% of the voltage value before the fault, no matter whether the three-phase permanent ground short-circuit fault (referred to as the three-permanent fault) of the line is correctly removed or the switch single In contrast, the commutation failure will not occur in the DC system, and the DC system is simulated by the model of the electromechanical transient simulation software itself.
Embodiment 2
[0030] Said step S3: when the fault in the electromechanical transient simulation causes the bus voltage of the inverter station to drop below 90% of the voltage value before the fault, the response simulation of the DC power of the electromechanical transient simulation software is as follows: the fault instantly reduces the DC power to 0 , after the fault is cleared, the DC power command returns to the value before the fault. Such as figure 2 shown.
Embodiment 3
[0032] Said step S3: For the three-permanent failure of the line, the single-phase switch refuses to move, that is, the bus voltage of the inverter station drops below 40% of the pre-fault level when the three-permanent failure occurs, then the fault moment is considered while the AC system is faulty during the electromechanical transient simulation Reduce the DC power to 0, and the DC power command returns to the value before the fault after 0.35s. Such as image 3 shown.
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