Specialty Motors and Drive Control 特种电机与驱动控制 |
| Submission Deadline: October 31, 2026 |
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| Chair: |
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| Xiaomei Liu |
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| Zhengzhou University of Light Industry, China |
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| Keywords: |
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- linear motor (直线电机)
- high-speed electric machine (高速电机)
- Magnetic field modulation motor (磁场调制电机)
- Advanced drive control algorithm (先进驱动控制算法)
- Thermal management technology (热管理技术)
- Fault-tolerant control technology (容错控制技术)
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| Topics: |
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- Electromagnetic topology optimization, thrust ripple suppression and high-precision drive technology of linear motors (直线电机电磁拓扑优化、推力波动抑制与高精度驱动技术)
- Rotor dynamics, loss analysis and lightweight structural design of high-speed motors (高速电机转子动力学、损耗分析及轻量化结构设计)
- Torque improvement mechanism and cogging torque reduction method of field-modulated permanent magnet motors (磁场调制类永磁电机转矩提升机理与齿槽转矩削弱方法)
- Research on high-performance advanced drive control algorithms and sensorless control strategies for motors (电机高性能先进驱动控制算法及无传感器控制策略研究)
- Full-domain thermal management, heat dissipation structure and temperature field simulation technology of high-power-density motors (高功率密度电机全域热管理、散热结构与温度场仿真技术)
- Fault diagnosis and fault-tolerant control technology for motor windings, permanent magnets and sensors (电机绕组、永磁体及传感器故障诊断与容错控制技术)
- Integrated design of special motors (linear / high-speed / field-modulated) under multi-physics coupling (多物理场耦合下特种电机(直线/高速/磁场调制)一体化设计)
- Efficient and highly reliable integrated application technology of motor systems for high-end equipment (面向高端装备的电机系统高效、高可靠集成应用技术)
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| Summary: |
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- This special seminar on electrical motors focuses on three novel motor topologies, namely linear motors, high-speed motors and field-modulated motors, and conducts interdisciplinary integrated research on advanced drive control algorithms, thermal management technologies and fault-tolerant control technologies. Bringing together university researchers and enterprise R&D engineers, the seminar addresses core industrial bottlenecks including electromagnetic optimization of special motors, high-precision drive strategies, full-domain temperature rise suppression and stable operation under fault conditions. It shares cutting-edge theories and engineering implementation schemes based on multi-physics simulation and prototype test data, builds a full-chain technical system covering motor electromagnetic design, drive control, thermal temperature control and fault tolerance, establishes an exchange and cooperation platform for industry, university and research institutes, develops complete technical solutions for high-performance motors, and drives the iterative upgrading of motor systems for high-end equipment toward higher precision, higher power density, greater reliability and longer service life.
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- 本次电机专题研讨会聚焦直线电机、高速电机、磁场调制电机三大新型电机拓扑,围绕先进驱动控制算法、热管理技术、容错控制技术开展多技术交叉融合研讨,汇聚高校科研人员、企业研发工程师,针对特种电机电磁本体优化、高精度驱动策略、全域温升抑制、故障工况稳定运行等行业核心痛点,结合多物理场仿真与样机实测成果分享前沿理论、工程落地方案,打通电机电磁设计、驱动控制、散热温控、故障容错全链条技术体系,搭建产学研交流对接平台,凝练高性能电机成套技术方案,推动高端装备电机系统向高精度、高功率密度、高可靠、长寿命方向迭代升级。
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