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Permanent Magnet Temperature Estimation for PMSMs Using Virtual Position-offset Injection

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摘要 This paper proposes a virtual position-offset injection based permanent magnet temperature estimation approach for permanent magnet synchronous machines(PMSMs). The concept of virtual position-offset injection is mathematically transforming the machine model to a virtual frame with a position-offset. The virtual frame temperature estimation model is derived to calculate the permanent magnet temperature(PMT) directly from the measurements with computation efficiency. The estimation model involves a combined inductance term, which can simplify the establishment of saturation compensation model with less measurements. Moreover, resistance and inverter distorted terms are cancelled in the estimation model, which can improve the robustness to the winding temperature rise and inverter distortion. The proposed approach can achieve simplified computation in temperature estimation and reduced memory usage in saturation compensation. While existing model-based approaches could be affected by either the need of resistance and inverter information or complex saturation compensation. Experiments are conducted on the test machine to verify the proposed approach under various operating conditions.
出处 《CES Transactions on Electrical Machines and Systems》 EI CSCD 2024年第1期51-60,共10页 中国电工技术学会电机与系统学报(英文)
基金 supported in part by the National Natural Science Foundation of China under Grant 52105079 and 62103455。
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