Simulation analysis and development of speed adjusting systems in high-power super high-speed doubly-fed induction machines
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摘要: 提出一種應用于大容量超高速(4000kW/3600r·min-1)雙饋變頻調速控制方法,研制出相應的實際控制系統.根據系統中負載電機、大功率變流器和工程化矢量空間計算的離散數學模型,以PSIM6.0的SIMCAD環境為開發平臺,建立起雙饋電機變頻調速矢量控制系統算法仿真平臺,計算出相關的仿真結果,并以此為基礎設計、研制出實際應用控制系統.6500MW沖擊發電機機組實驗運行結果表明,系統電流響應超調量小,激磁和轉矩分量解耦,動態過程磁鏈平滑,驗證了系統仿真模型的有效性.該控制系統具備與直流傳動系統相同的優越動、靜態品質.Abstract: An approach of high-power super high-speed doubly-fed variable frequency drive and its application system were presented. Based on a discrete mathematical model of doubly-fed induction machines, high capacity convertors, and engineering vector space computation, an algorithm simulation platform was constructed in SIMCAD of PSIM6.0. The application system of a 6500 MW shock generator was set up on the basis of the simulation results. Its experiment results showed that the current's overshooting was small, the exciting component and torque component were independent, and the dynamic flux was smooth. The simulation and experiment results are in agreement demonstrating the validity of the model. It is also found that the static and dynamic performances of the application system are similar to those of DC drives.
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Key words:
- variable frequency /
- vector space /
- convertor /
- discrete model /
- generators
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