A hydrogen production converter topology and control method suitable for connecting to a single-phase AC system
A single-phase AC, topology technology, applied in the direction of AC power input conversion to DC power output, control/regulation systems, DC power input conversion to DC power output, etc. Fast tracking, improving current output capability, and achieving the effect of power balance
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Embodiment 1
[0038] refer to Figure 1~3 , this embodiment provides a hydrogen production converter topology suitable for connecting to a single-phase AC system, including four parts: an AC power supply 100, a front-stage rectification module 200, a second-stage conversion module 300, and a control system module 400. Among them, the AC power supply 100, the AC power supply 100 is a single-phase AC voltage source, the AC power supply 100 is connected in parallel with the front-stage rectification module 200 after being connected in series with the AC reactance, and the low-voltage end after parallel connection is connected with the ground point; the front-stage rectification module 200, the front-stage The rectifier module 200 has multiple sets of DC output terminals, and all the DC output terminals of the front-stage rectifier module 200 are connected to the DC input terminals of the second-stage conversion module 300; the second-stage conversion module 300 has multiple sets of DC output te...
Embodiment 2
[0046] refer to Figure 1~5 , which is the second embodiment of the present invention, this embodiment is based on the previous embodiment, and the difference from the previous embodiment is that this embodiment provides a hydrogen production converter suitable for connecting to a single-phase AC system The control method of the topology structure, the control structure of the pre-stage rectification module 200 in S1 includes the following calculation process:
[0047] S11: Calculate the phase of the power grid: connect the AC voltage sampling value Ug to the phase-locked loop PLL through the delay link, delay 5ms, and calculate the phase signal θ of the AC voltage source grid .
[0048] S12: Calculate the AC current phase: the average value of the capacitor voltage is given and the average value u of all full-bridge module capacitor voltages avg Make a difference, the difference is connected to the input terminal of the first proportional-integral regulator PI1, and the o...
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