Fig. 1. Flowchart for incremental conductance - MPPTalgorithm
Fig. 2. PV panel characteristics showing MPP usingIncremental Conductance method
Fig. 3. Single phase five level cascaded H-bridge inverter
Fig. 4. Block diagram of STATCOM with proposed control scheme
Fig. 5. HCC system (a) schematic hysteresis vectordiagram (b) Error current calculation system
Fig. 6. block diagram for closed loop operation of proposed system
Fig. 7. HCC for cascaded multilevel inverter
Fig. 8. PV array ? output current and voltage
Fig. 9. Rectified dc voltage using 3-phase rectifier
Fig.10. Wind energy - PMSG output voltage
Fig. 11. Single phase H-bridge inverter voltage withHysteresis Band variation: (a) HB=0.1, (b) HB=0.4 (c)
Fig. 12. Switching pulses for leg 1 & 2 of H-bridge inverter
Fig. 13. Split inductor current waveform Id & Iq
Fig. 14. Grid current / Voltage synchronization: (a) SPWM(b) Hysteresis current control
Fig. 15. THD analysis: (a) output voltage (b) output current
Fig. 16. H-bridge inverter output voltage at 0.95 (HysteresisBand) and THD analysis
Fig. 17. Split inductor based output voltage and THDanalysis
Fig. 18. Output current waveform of inverter with splitinductor
Fig. 19. Experimental setup of proposed system
Fig. 20. Comparison of output voltage for various invertertopologies
Table 1. THD comparison for various inverter topologies with HCC algorithm at 0.95 (hysteresis band)
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