Single-stage booster inverter non-isolated grid-connected photovoltaic power generation system and control method thereof
A technology for isolating photovoltaic grid-connected power generation and control method, applied in the field of electric power, can solve problems such as increasing system cost, reducing conversion efficiency and reliability, and achieving the effect of eliminating common-mode voltage and reducing common-mode voltage amplitude
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[0047] A specific example of the present invention is as follows:
[0048] Photovoltaic battery output voltage Upv=150V, busbar voltage amplitude Ub=400V, grid voltage / frequency: 110V / 50Hz, distributed capacitance Cpv=100nF, photovoltaic panel ground impedance Rpv=10Ω, filter inductance Lg=20mH, coupling inductance: L1=215μH, N=2.5, k=0.98, capacitor C1=10μF, C2=70μF, inductance L3=25μH, switching frequency fs=10KHz.
[0049] When the single-stage boostable inverter in the prior art adopts SVPWM and is plugged in through, the ripple of the three-phase grid-connected current is large due to the large leakage current. The common mode voltage changes 8 times in one switching cycle, and has 4 different level values. When the grid-connected power is 500W, the leakage current amplitude is 0.9A, and the effective value is about 0.64A, which is much larger than the VDE0126-1-1 standard.
[0050] However, in the case of using three adjacent effective vectors to synthesize pulse width...
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