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April 30, 2026Acoustics0 citationsOpen Access

Noise Characteristics and Multi-Dimensional Sound Quality Evaluation of High-Frequency Transformers Under Non-Sinusoidal Excitation

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CZCai ZengLLLi LiZYZhu Y

Key Points

  • Evaluate noise characteristics and quality of high-frequency transformers under different electrical excitations.
  • Collected acoustic data using sensors and head-and-torso simulator.
  • Analyzed noise characteristics related to voltage levels and operating frequencies.
  • Conducted a multi-dimensional evaluation using sound quality parameters.
  • HFT noise shows steady-state time-domain and distinct tonal frequency-domain features.
  • Noise intensity correlates with voltage levels and decreases with higher operating frequencies.
  • Design should focus on reducing single-frequency noise to manage perceptual annoyance.

Abstract

High-frequency transformer (HFT) noise is a pivotal indicator of equipment performance. To conduct a comprehensive evaluation, this study systematically performed testing and evaluation on the noise generated by a 70 kW HFT under no-load conditions. Acoustic data were collected using acoustic sensors and a head-and-torso simulator, followed by an analysis of noise characteristics focusing on the impacts of voltage levels and operating frequencies. A multi-dimensional evaluation of HFT noise was carried out using sound quality parameters to unravel its intrinsic attributes under electrical parameter excitation. The key findings are as follows: HFT noise exhibits steady-state time-domain behavior and distinct tonal frequency-domain features; the dominant frequency is twice the operating frequency, with prominent harmonics. The noise intensity increases with the voltage levels (~47.0 dB (A) at 200 V to ~72.0 dB (A) at 750 V at 5 kHz) but decreases with the operating frequencies (~82.0 dB (A) at 4 kHz to ~47.0 dB (A) at 10 kHz at 750 V). This study establishes correlations between the electrical parameters and sound quality metrics; the loudness, sharpness, tone-to-noise ratio and prominence ratio are sensitive to the electrical parameters of HFT. Single-frequency noise from HFT exhibits remarkable perceptual salience, exacerbating the perceived annoyance. Thus, HFT design should prioritize reducing single-frequency noise to alleviate such issues.

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Cite This Study

Zeng et al. (2026) studied this question.

synapsesocial.com/papers/69f2a42a8c0f03fd6776336chttps://doi.org/10.3390/acoustics8020028
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