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Research on Operation Principle and Control of Novel Hybrid Excitation Bearingless Permanent Magnet Generator

机译:新型混合励磁无轴承永磁发电机的工作原理与控制研究

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Under the condition of load changing, the magnetic field of traditional permanent magnet generators (PMG) is hard to be adjusted, and the mechanical bearings are significantly worn. To overcome the drawbacks above, a novel hybrid excitation bearingless permanent magnet generator (HEBPMG) is proposed in this paper, which has integrated the merits of hybrid excitation permanent magnet generators and magnetic bearings. Firstly, the structure and winding configuration of the HEBPMG are introduced, and then the principles of radial suspension and power generation are presented. The suspension principle as well as power generation principle is analyzed in this paper. Then, the flux linkage and induced voltage equations are derived, and the accurate mathematical model of radial suspension force is built based on the Maxwell tensor method. Subsequently, by means of the finite element analysis software-ANSYS Maxwell, the corresponding electromagnetic characteristics are analyzed to verify the correctness of the mentioned models. In addition, a compensation control strategy based on flux-linkage observation is proposed to solve the problems of unstable suspension force and generating voltage under variable load condition in this paper. Meanwhile, the corresponding control system is constructed and its feasibility is validated by simulation results. Finally, an experimental prototype of a 2.2 kW HEBPMG is tested. Experimental researches show that the HEBPMG can operate steadily under variable load condition and possess good suspension performance and power generation quality.
机译:在负载变化的情况下,传统永磁发电机(PMG)的磁场难以调节,机械轴承明显磨损。为了克服上述缺点,本文提出了一种新型的混合励磁无轴承永磁发电机(HEBPMG),它融合了混合励磁永磁发电机和磁轴承的优点。首先介绍了HEBPMG的结构和绕组结构,然后介绍了径向悬挂和发电的原理。分析了悬架原理和发电原理。然后,推导了磁链和感应电压方程,并基于麦克斯韦张量法建立了径向悬架力的精确数学模型。随后,借助于有限元分析软件-ANSYS Maxwell,分析了相应的电磁特性,以验证所提及模型的正确性。此外,为解决变负荷条件下悬架力不稳定和产生电压的问题,提出了一种基于磁链观测的补偿控制策略。同时,构建了相应的控制系统,并通过仿真结果验证了其可行性。最后,测试了2.2 kW HEBPMG的实验原型。实验研究表明,HEBPMG能够在可变负载条件下稳定运行,并具有良好的悬挂性能和发电质量。

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