Adaptive Cognitive Compensation for Four-Wire Distribution Grids Using Disturbance-Aware UPQC-SPV Architecture
Keywords:
Unified Power Quality Conditioner (UPQC), Solar Photovoltaic (SPV) Integration, Four-Wire Distribution Systems, Adaptive Compensation, IEEE 519-2022, Cognitive Grid ArchitectureAbstract
The increasing penetration of renewable energy sources and nonlinear loads in modern distribution grids has
intensified power quality challenges, including voltage sags/swells, harmonic distortion, load unbalance, and
neutral current issues. Conventional Unified Power Quality Conditioners (UPQCs) operate with static control
strategies, applying uniform compensation regardless of disturbance type resulting in suboptimal performance and
unnecessary power losses. This paper proposes an Adaptive Cognitive Compensation (ACC) architecture that
integrates a four-wire UPQC with a dual-stage Solar Photovoltaic (SPV) array with a disturbance-aware decision
engine. The system employs a rule-based strategy mapper that dynamically selects between series-dominant, shunt
dominant, and hybrid compensation modes based on real-time classified disturbance type and severity. The
theoretical advantages include reduced switching losses through selective inverter activation, faster response time
via pre-configured mode selection, and maintained compliance with IEEE 519-2022 and IEEE 1159-2019
standards. A comprehensive evaluation methodology is proposed using OPAL-RT real-time simulation, with test
conditions, metrics, baselines, and hypotheses explicitly defined as open empirical questions. The mode-switching
logic is justified through a categorical allocation framework where voltage-domain disturbances receive high series
utilization, current-domain disturbances receive high shunt utilization, and combined disturbances receive hybrid
compensation. This work provides a complete architectural blueprint and reproducible evaluation framework for
future implementation and validation, representing a paradigm shift from static, reactive compensation to dynamic,
cognitive power quality governance.










