研究目的
To design an adaptive observer-based control strategy for maximum power point tracking (MPPT) of uncertain photovoltaic (PV) systems, overcoming the difficulty of PVG output current and voltage measurement in situations where PV panels are established away from the converter and ensuring an accurate MPPT control by neutralizing eventual effects due to the use of long PV cable between the PVG and the converter.
研究成果
The designed adaptive observer–based backstepping controller effectively overcomes the difficulty of PVG output voltage and current measurement in situations where PV panels are established away from the converter and ensures an accurate MPPT control by neutralizing eventual effects due to the use of long PV cable between the PVG and the converter. The controller's effectiveness in compensating for the impact of cable unknown parameters on the MPPT efficiency is validated through simulation.
研究不足
The study assumes the unknown signal μ(t) is bounded and focuses on compensating for cable resistance and inductance uncertainties. The robustness is verified against specific deviations (+20% for R and +30% for L), but other environmental factors affecting PV performance are not considered.