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永磁伺服电机位置检测系统高性能激励源设计

郑方燕 袁彬斐 张浩 徐浩杰 陈鸿雁

传感技术学报2026,Vol.39Issue(2):256-262,7.
传感技术学报2026,Vol.39Issue(2):256-262,7.DOI:10.3969/j.issn.1004-1699.2026.02.005

永磁伺服电机位置检测系统高性能激励源设计

Design of High Performance Excitation Source for Permanent Magnet Servo Motor Position Detection System

郑方燕 1袁彬斐 1张浩 2徐浩杰 1陈鸿雁3

作者信息

  • 1. 重庆理工大学机械检测技术与装备教育部工程研究中心,重庆 400054
  • 2. 重庆理工大学机械工程学院,重庆 400054
  • 3. 重庆理工大学电气与电子工程学院,重庆 400054
  • 折叠

摘要

Abstract

The sources and types of errors in the excitation source of the permanent magnet servo motor position detection system are an-alyzed based on time grid technology,and a high-performance and low-latency excitation signal source generation system is designed based on direct digital frequency synthesis technology and closed-loop feedback control principle.The system takes FPGA as the control center and generates two sine and cosine excitation signals based on DDS technology,realizes real-time feedback of the excitation signal through the signal feedback loop and FPGA control,and solves the problems of poor quality and low position detection accuracy of the synthesized traveling wave signal caused by the unequal amplitude and phase of the two excitation signals by using the sequencing algo-rithm and pulse interpolation counting.Experiments show that the system can greatly improve the problem of unequal amplitude and phase non-quadrature of the output signal of the excitation source,and the secondary error of the synthesized traveling wave signal can be effectively suppressed.The position detection error is reduced from±67.2343′to±15.5396′,the accuracy is increased by 77%,and the response speed of the excitation source is improved.

关键词

电机位置检测/高性能激励源/闭环反馈控制/测量精度

Key words

motor position detection/high performance incentive source/closed loop feedback control/measurement accuracy

分类

机械制造

引用本文复制引用

郑方燕,袁彬斐,张浩,徐浩杰,陈鸿雁..永磁伺服电机位置检测系统高性能激励源设计[J].传感技术学报,2026,39(2):256-262,7.

基金项目

国家重点研发计划项目(2023YFB3209400) (2023YFB3209400)

重庆理工大学科研创新团队项目(2023TDZ008) (2023TDZ008)

重庆理工大学研究生教育高质量发展项目(gzlcx20222040,gzljg2024315) (gzlcx20222040,gzljg2024315)

传感技术学报

1004-1699

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