Microgrid control method having functions of voltage unbalance compensation and harmonic suppression
A voltage unbalanced, multi-inverter technology, applied in the direction of converting irreversible DC power input to AC power output, harmonic reduction devices, and AC networks to reduce harmonics/ripples, etc. It has the problems of harmonic suppression, large amount of program calculation, affecting the fast response speed of the system, etc.
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Embodiment 1
[0118] A microgrid multi-inverter control method with both voltage unbalance compensation and harmonic suppression, the method operates in an island microgrid multi-inverter parallel system, and the island microgrid multi-inverter parallel system includes several distributed type power generation unit, common bus, non-linear load, three-phase unbalanced load, and centralized controller, the several distributed power generation units are connected in parallel, and the several distributed power generation units are connected to the common bus through feeders, and the The non-linear load, the three-phase unbalanced load, and the centralized controller are arranged on the common bus, and the distributed power generation unit includes sequentially connected micro-sources, a three-phase full-bridge inverter circuit, and a filter inductor L , filter capacitor C, feeder, the distributed power generation unit also includes a local controller, a drive protection circuit, the three-phase ...
Embodiment 2
[0139] According to a microgrid multi-inverter control method with both voltage unbalance compensation and harmonic suppression described in Embodiment 1, it is further defined as, in the step (4), respectively extract v oαβ i oαβ The positive sequence component of the fundamental wave v oαβ + i oαβ + The calculation formula of is shown in formula (I):
[0140] v oαβ + = v oα + v oβ + = 1 ...
Embodiment 3
[0143] According to the microgrid multi-inverter control method with both voltage unbalance compensation and harmonic suppression described in Embodiment 1, it is further defined as, in the step (5), according to the filter capacitor voltage fundamental positive sequence vector v oαβ + and feeder current fundamental wave positive sequence vector i oαβ + Calculate the fundamental positive sequence active power P + and fundamental positive sequence reactive power Q + , the calculation formula is shown in formula (II):
[0144] P + Q + = v oα + v oβ + ...
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