Three-phase inverter backstepping sliding mode control method and system for achieving stabilization of micro-grid
A three-phase inverter and control method technology, applied in the field of smart grid, can solve the problem of not considering the uncertainty of actual system parameters, not considering the uncertainty of the actual system, and the high accuracy requirements of mathematical models, and achieve good engineering. Application prospects, good steady-state and dynamic characteristics, the effect of improving anti-interference ability
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[0150] A simulation model is built based on PSCAD / EMTDC software to simulate and verify the controller. The simulation parameters are as follows: Photovoltaic power generation system parameters: light intensity 1000lm / m 2 , ambient temperature 20°C, L pv = 1mH, C pv =500μF, C dc =1000μF; Inverter parameters: output filter inductance L=5mH, capacitor C=470μF, local load is rated pure resistive load R a = R b = R c =100Ω; Feedback control law parameter: k 11 =k 12 =k 13 =3000,k 21 =k 22 =k 23 =25000,n 1 =n 2 =n 3 =100,δ 0 = 46 and h 1 =100; the output voltage reference value is a three-phase symmetrical power frequency sine wave with an amplitude of 310V (same as the grid voltage), and the PWM switching frequency is f s = 10kHz.
[0151] The simulation verification of the load anti-disturbance ability of the photovoltaic inverter is carried out. The load jumps from R=100Ω to R=50Ω at 0.2s, and the output voltage and current waveforms are as follows: Figure 4 ...
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