Reinforcement Learning Based Efficiency Optimization Scheme for the DAB DC-DC Converter with Triple-Phase-Shift Modulation

Yuanhong Tang, Weihao Hu, Jian Xiao, Zhangyong Chen, Qi Huang, Zhe Chen, Frede Blaabjerg

Research output: Contribution to journalJournal articleResearchpeer-review

66 Citations (Scopus)
220 Downloads (Pure)

Abstract

Aim to improve the power efficiency of the dual-active-bridge (DAB) dc–dc converter, an efficiency optimization scheme with triple-phase-shift (TPS) modulation using reinforcement learning (RL) is proposed in this article. More specifically, the Q-learning algorithm, as a typical algorithm of the RL, is applied to train an agent offline to obtain an optimized modulation strategy, and then the trained agent provides control decisions online in a real-time manner for the DAB dc–dc converter according to the current operating environment. The main objective is to obtain the optimal phase-shift angles for the DAB dc–dc converter, which can achieve the maximum power efficiency by reducing the power losses. Moreover, all possible operation modes of the TPS modulation are considered during the offline training process of the Q-learning algorithm. Thus, the cumbersome process for selecting the optimal operation mode in the conventional schemes can be circumvented successfully. Based on these merits, the proposed efficiency optimization scheme using the RL can realize the excellent performances for the whole load conditions and voltage conversion ratios. Finally, a 1.2-KW prototyped is built, and the simulation and the experimental results demonstrate that the power efficiency can be improved by using the optimization scheme based on the RL.
Original languageEnglish
Article number9138774
JournalI E E E Transactions on Industrial Electronics
Volume68
Issue number8
Pages (from-to)7350 - 7361
Number of pages12
ISSN0278-0046
DOIs
Publication statusPublished - Aug 2021

Keywords

  • DAB DC-DC converter
  • power efficiency
  • optimization
  • Reinforcement Learning (RL)
  • Q-learning

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