Adaptive Gradient Descent MPPT Algorithm With Complexity-Aware Benchmarking for Low-Power PV Systems
Kimia Ahmadi, Wouter A. Serdijn

TL;DR
This paper introduces an adaptive gradient descent MPPT algorithm for low-power PV systems that improves tracking efficiency and robustness under dynamic conditions, outperforming existing methods in accuracy and computational complexity.
Contribution
It presents a novel, complexity-aware MPPT algorithm with adaptive step sizing and an initialization routine, enhancing efficiency and robustness in low-power PV applications.
Findings
Achieves over 99.9% MPPT efficiency under standard conditions.
Improves tracking efficiency by up to 7.8% under partial shading.
Outperforms 35 state-of-the-art P&O-based MPPT algorithms in simulations.
Abstract
This paper proposes a computationally efficient, real-time maximum power point tracking (MPPT) algorithm tailored for low-power photovoltaic (PV) systems operating under fast-changing irradiance and partial shading conditions (PSC). The proposed method augments the classical perturb and observe (P&O) algorithm with an adaptive gradient descent mechanism that dynamically scales the perturbation step size based on the instantaneous power-voltage slope, thereby minimizing tracking time and steady-state oscillations. An optional initialization routine enhances global MPP (GMPP) tracking under PSC. Extensive simulations, including irradiance recordings from freely moving rodent subjects relevant to the targeted application, and tests across varying converter topologies and temperatures, demonstrate its robust, topology-independent performance. The proposed algorithm achieves 99.94 percent…
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Taxonomy
TopicsPhotovoltaic System Optimization Techniques · Multilevel Inverters and Converters · Advanced DC-DC Converters
