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March 8, 20261 citationsOpen Access

A Hybrid Optimal Modulation Strategy for Dual-Side Asymmetric Duty Cycles in a Dual-Active-Bridge Converter

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BSBiaoguang SunZLZhenfeng Liu

Key Points

  • The aim is to reduce current stress and eliminate the power dead zone in DAB converters using a novel modulation strategy.
  • Introduced a hybrid optimized modulation strategy based on dual-side asymmetric duty modulation (ADM).
  • Developed a dynamic compensation mechanism via mode switching for coordinated dual-mode modulation.
  • Incorporated a virtual voltage control scheme for improved dynamic response and stability.
  • Experimental results showed reduced peak-to-peak current stress in the DAB converter.
  • The proposed strategy significantly enhanced the dynamic performance across the full power operating range.

Abstract

To address the issues of excessive current stress and the power dead zone associated with conventional phase-shift modulation in dual-active-bridge (DAB) converters, a hybrid optimized modulation strategy based on dual-side asymmetric duty modulation (ADM) is proposed. The proposed strategy aims to minimize the peak-to-peak current stress by introducing two distinct operating modes of the converter. A dynamic compensation mechanism based on mode switching is developed, enabling a coordinated dual-mode modulation to achieve minimum peak-to-peak current stress over the full power operating range. In addition, a virtual voltage control scheme is incorporated to enhance the dynamic response and stability of the system. Finally, experimental results obtained from a laboratory prototype verify that the proposed strategy effectively reduces the peak-to-peak current stress while significantly improving the dynamic performance of the DAB converter.

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Cite This Study

Sun et al. (2026) studied this question.

synapsesocial.com/papers/69ada885bc08abd80d5bb90ahttps://doi.org/10.3390/en19051365
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