The invention provides a three-phase phase-locked loop method appropriate for photovoltaic grid connected
low voltage ride through and relates to the field of
solar power generation power supply, in particular to a three-phase phase-locked loop which has a function of
low voltage ride through. The three-phase phase-locked loop method appropriate for the photovoltaic grid connected
low voltage ride through solves the problems that an existing phaselock technique needs to consider influences of zero wander, and an existing detection method does not consider influences brought by measuring
voltage deviation on
voltage detection. The three-phase phase-locked loop method appropriate for photovoltaic grid connected
low voltage ride through includes a first step of inputting network
voltage v to a second-order orthogonal
signal generator and outputting two sinusoidal signals v' and qv', wherein phases of the two sinusoidal signals differs by 90 degrees; a second step of calculating the signals v' and qv', obtaining line
voltage amplitude VRMS, and converting the line
voltage amplitude VRMS into phase
voltage amplitude VP; a third step of inputting the signals v' and qv' into the phase-locked loop, locking a line voltage
phase angle theta1, detecting the line voltage
phase angle theta1, and converting the line voltage
phase angle theta1 into phase voltage phase angle thetap; and a fourth step of conducting
grid connection according to the phase voltage amplitude VP and the phase voltage phase angle thetap by means of an
inverter current control strategy, and achieving the photovoltaic grid connected
low voltage ride through. The three-phase phase-locked loop method appropriate for the photovoltaic grid connected
low voltage ride through is appropriate for photovoltaic power stations.