Research on Optimization Strategies for Immersive Communication Experience in Metaverse Scenarios
DOI: https://doi.org/10.62517/jnme.202610415
Author(s)
He Zhijia
Affiliation(s)
University of Technology Sydney, Sydney, Australia
Abstract
The widespread deployment of nonlinear loads in low-voltage power distribution systems has led to increasingly severe harmonic pollution. Passive filters have become the mainstream mitigation solution due to their cost-effectiveness and reliability; however, in practical operation, factors such as component parameter drift, grid frequency fluctuations, and temperature variations often cause filters to deviate from their designed resonant frequency, resulting in detuning issues. This not only diminishes the filtering effectiveness but can also induce parallel resonance, amplifying harmonic currents. This paper systematically analyzes the causes of detuning and its impact on system safety and energy efficiency. Building upon this analysis, we propose an integrated solution that combines dynamic detection, adaptive tuning, and intelligent compensation techniques. Through real-time parameter identification, variable reactance adjustment, and coordinated control strategies, the filter is enabled to continuously track the actual harmonic frequency, ensuring optimal filtering performance at all times. The research findings demonstrate that adaptive tuning and compensation technologies can effectively address the challenges posed by detuning, providing a reliable technical pathway for harmonic mitigation in low-voltage power distribution systems.
Keywords
Harmonic Mitigation; Detuning; Adaptive Tuning; Dynamic Compensation
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