Design, fabrication and experimental analysis of A 5 kVA hybrid Solar inverter with MPPT Charge Controller for improved energy efficiency
Keywords:
Maximum Power Point Tracking (MPPT), varying irradiance, charge controller, Pulse Width Modulation (PWM), photovoltaic (PV)Abstract
The increasing global demand for reliable, efficient, and sustainable energy
systems has intensified the need for advanced solar power conversion
technologies capable of maximizing photovoltaic (PV) energy utilization. This
study presents the design, development, and performance evaluation of a 5 kVA
hybrid solar inverter integrated with a Maximum Power Point Tracking (MPPT)
charge controller to enhance overall system efficiency and operational
reliability. Conventional inverter systems employing Pulse Width Modulation
(PWM)-based charge controllers often exhibit reduced energy conversion
efficiency, particularly under fluctuating solar irradiance and varying load
conditions. To address these limitations, an advanced MPPT-based DC–DC
converter was incorporated into the system to dynamically track and maintain
the PV array at its optimum operating point for maximum energy extraction.
The developed hybrid system consists of a 5 kVA pure sine wave inverter rated
at 230 V AC and 50 Hz, a 48 V battery bank, a high-efficiency MPPT charge
controller, and an intelligent hybrid switching mechanism enabling seamless
integration of solar, battery, and grid/generator power sources. Both simulation
and experimental analyses were conducted under varying irradiance and load
profiles to evaluate system performance. Results revealed that the integrated
MPPT controller enhanced solar energy harvesting efficiency by approximately
15–25% compared to conventional PWM-based systems. The inverter maintained
stable voltage regulation within ±2%, frequency stability of ±0.5 Hz, and total
harmonic distortion below 3%. Furthermore, the implemented multi-stage
battery charging strategy improved storage efficiency, minimized battery
stress, and prolonged battery lifespan. The study demonstrates that
integrating advanced MPPT control significantly improves energy utilization
efficiency, system reliability, and the techno-economic viability of hybrid solar
power systems for residential and small-scale commercial applications.
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