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潜水推进器用内置式永磁同步电机全速域无位置控制研究

赵博强 王皓扬 许志先 于思洋

电机与控制应用2026,Vol.53Issue(6):623-631,9.
电机与控制应用2026,Vol.53Issue(6):623-631,9.DOI:10.12177/emca.2026.173

潜水推进器用内置式永磁同步电机全速域无位置控制研究

Research on Full-Speed-Range Sensorless Control of Interior Permanent Magnet Synchronous Motors for Underwater Thrusters

赵博强 1王皓扬 1许志先 1于思洋1

作者信息

  • 1. 沈阳工业大学 电气工程学院,辽宁 沈阳 110870
  • 折叠

摘要

Abstract

[Objective]To address the stringent requirements of high reliability,strong robustness,and smooth full-speed-range control for underwater thruster drive systems in complex environments,a hybrid high-frequency square-wave injection method/sliding mode observer(HFI/SMO)sensorless control strategy is proposed.[Methods]A dual-mode switching strategy of HFI/SMO was adopted:the HFI was used in the zero/low-speed range,and the SMO based on a phase-locked loop was employed in the medium/high-speed range.Smooth transition was achieved through a weight-switching module.The dynamic and static performance of the proposed algorithm,as well as its engineering practicability,were verified through simulations.[Results]The simulation results demonstrated that the proposed hybrid HFI/SMO control strategy maintained high-precision control across the full speed range.At low speed(200 r/min),the speed fluctuation was maintained within±5 r/min(±2.5%error).At high speed(3 000 r/min),the fluctuation was constrained within±8 r/min(±0.27%error),achieving high-precision speed regulation standards.During acceleration from 0 to 3 000 r/min,the maximum tracking error was suppressed below 40 r/min without overshoot,exhibiting superior dynamic tracking performance.[Conclusion]The proposed hybrid HFI/SMO control strategy meets the precise speed regulation requirements of underwater thrusters,providing a practical solution for high-performance sensorless drives.

关键词

全速域/无位置传感器控制/高频方波注入/权重切换

Key words

full-speed-range/sensorless control/high-frequency square-wave injection/weight-switching

分类

信息技术与安全科学

引用本文复制引用

赵博强,王皓扬,许志先,于思洋..潜水推进器用内置式永磁同步电机全速域无位置控制研究[J].电机与控制应用,2026,53(6):623-631,9.

电机与控制应用

1673-6540

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