Parallel method of high-voltage shore power supply based on independent droop control
A shore power supply and cascading technology is applied in electrical components, output power conversion devices, and AC power input is converted into AC power output. Achieve the effect of reducing the amount of calculation, suppressing the circulation, and improving the stability
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Embodiment 1
[0059] Through the matlab simulation software, the parallel control system of two high-voltage shore power supplies is simulated.
[0060] The main circuit parameters of the parallel high-voltage shore power supply are shown in the following table:
[0061] No.
parameter name
parameter value
unit
1
Input voltage
6000
V
2
input frequency
50
Hz
3
Rated Capacity
2
MW
4
DC bus voltage
900
V
5
The output voltage
6600
V
6
Output frequency
60
Hz
7
filter inductor
5
mH
8
1
μF
[0062] Take a set of sag coefficient m=1×10 -6 ,n=1×10 -6 , observe the parallel operation of the two shore power supplies.
[0063] After the two high-voltage shore power supplies start up with no load and run stably, when t is 0.2s, the parallel contactor closes, and the two shore power supplies run in parallel. At the moment of paral...
Embodiment 2
[0065] By building an actual system, the parallel connection effect of two high-voltage shore power supplies using an independent droop control method is verified. Its experimental block diagram is as follows Figure 7 As shown, two high-voltage shore power supplies input 10kV voltage, and the output is connected in parallel through two high-voltage switches. The shore power supply runs in parallel with the 1# shore power supply through pre-synchronous start. Figure 8 As shown, the load current is gradually divided evenly. When the 2# shore power supply exits, the load is borne by the 1# shore power supply. The withdrawal process is as follows Figure 9 shown.
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