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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Analytical expression for LVRT of BDFIG with enhanced current control to CW and reactive power support from GSC
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Analytical expression for LVRT of BDFIG with enhanced current control to CW and reactive power support from GSC

机译:BDFIG的LVRT的解析表达式,具有对CW的增强电流控制和来自GSC的无功功率支持

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During the low-voltage ride-through (LVRT) of the brushless doubly-fed induction generator (BDFIG), the oscillation of the power winding (PW) flux will induce high current in the control winding (CW), causing possible violation to the current constraint and weakening the power support capability of the machine-side converter (MSC). The existing PI control is designed based on the steady-state operation thus sensitive to the intense oscillation of the PW flux. To isolate the CW current control from the disturbances of the oscillating PW flux, the enhanced CW current control is newly proposed by introducing the change rates of the PW flux and the rotor flux to the inner-loop current control of the MSC as the feed-forward compensation terms. The analytical expressions of the PW current, the CW current, the rotor current, and the CW voltage are newly derived to quantify the LVRT effect of the enhanced control. With the DC-voltage constraint considered, the capacity of the grid-side converter (GSC) is newly utilized to improve the reactive power support capability. Dynamic simulation results show that the enhanced control reduces the oscillation of the CW current, the PW current and the rotor current. The accuracy of the analytical expression is validated by comparing it with the step-by-step simulation results. The selected references of the GSC current provide the additional reactive power support without violation to the constraint of the DC-voltage.
机译:在无刷双馈感应发电机(BDFIG)的低压穿越(LVRT)期间,功率绕组(PW)磁通的振荡将在控制绕组(CW)中感应出大电流,从而可能违反电流约束并削弱了机器侧转换器(MSC)的功率支持能力。现有的PI控制是基于稳态操作设计的,因此对PW通量的剧烈振荡敏感。为了将CW电流控制与振荡PW磁通的干扰隔离开来,通过将PW磁通和转子磁通的变化率引入MSC的内环电流控制作为馈电,新提出了增强的CW电流控制。远期补偿条款。新推导了PW电流,CW电流,转子电流和CW电压的解析表达式,以量化增强控制的LVRT效果。考虑到直流电压的限制,最近利用了电网侧变流器(GSC)的容量来提高无功功率支持能力。动态仿真结果表明,增强控制降低了CW电流,PW电流和转子电流的振荡。通过与逐步仿真结果进行比较,可以验证分析表达式的准确性。所选的GSC电流基准可提供额外的无功功率支持,而不会违反直流电压的限制。

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