A kind of step-down operation method of hvdc system based on hybrid mmc
An operation method and hybrid technology, which are applied to output power conversion devices, electrical components, and AC power input to DC power output, etc., can solve the problems affecting the safe and stable operation of the AC power grid and the reduction of the output AC voltage of the converter. , to achieve good pressure equalization effect, improve conveying capacity, and solve the effect of pressure equalization problem
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Embodiment 1
[0056] After the step-down operation, the DC voltage requirement becomes 15kV, the transmitted active power is 15MW, and the reactive power is adjusted from 4MVar to 6MVar during the step-down operation. Such as image 3 As shown, by changing the number of full-bridge sub-modules and half-bridge sub-modules in the upper bridge arm and the lower bridge arm, the sum of the output voltage of the upper bridge arm and the output voltage of the lower bridge arm is changed, and the DC output of the hybrid MMC is changed. Voltage, Figure 4 In (a), the DC voltage is reduced from 20kV to 15kV, and then by changing the number of full-bridge sub-modules and half-bridge sub-modules in the upper bridge arm and the lower bridge arm again, the output voltage of the upper bridge arm and the output voltage of the lower bridge arm The voltage difference remains unchanged, so that the output voltage of the AC side of the hybrid MMC does not change, that is, the AC output of the hybrid MMC is as...
Embodiment 2
[0058] After step-down operation, the DC voltage requirement becomes 5kV, the transmission reactive power remains unchanged, the reactive power is 4MVar, and the transmission active power is reduced to 5MW. By changing the number of full-bridge sub-modules and half-bridge sub-modules that are turned on in the upper bridge arm and the lower bridge arm, changing the sum of the output voltage of the upper bridge arm and the output voltage of the lower bridge arm, and changing the output voltage of the DC side of the hybrid MMC, by 20kV becomes 5kV, and the voltage drop is large at this time. By changing the number of full-bridge sub-modules and half-bridge sub-modules in the upper bridge arm and the lower bridge arm again, the output voltage of the upper bridge arm and the output voltage of the lower bridge arm The difference remains unchanged, so that the output voltage of the hybrid MMC AC side remains unchanged, such as Figure 5 (a), the active power P changes from 20MW to 5M...
Embodiment 3
[0060] After step-down operation, the DC voltage requirement becomes 5kV, the transmitted reactive power remains unchanged, the reactive power is 4MVar, and the transmitted active power is 5MW. By changing the number of full-bridge sub-modules and half-bridge sub-modules that are turned on in the upper bridge arm and the lower bridge arm, changing the sum of the output voltage of the upper bridge arm and the output voltage of the lower bridge arm, and changing the output voltage of the DC side of the hybrid MMC, by 20kV becomes 5kV. By changing the number of full-bridge sub-modules and half-bridge sub-modules in the upper bridge arm and the lower bridge arm again, the difference between the output voltage of the upper bridge arm and the output voltage of the lower bridge arm remains unchanged, so that Hybrid MMC AC side output voltage remains unchanged, such as Figure 6 (a), the active power P changes from 20MW to 5MW, and the reactive power remains unchanged. By injecting lo...
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