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High-Frequency Resonance Analysis and Reshaping Control Strategy of DFIG System Based on DPC

机译:基于DPC的DFIG系统的高频共振分析与重塑控制策略

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摘要

Direct power control (DPC) can reduce the complexity of a controller and enhance the dynamic response for doubly fed induction generators (DFIG) system. The high-frequency resonance (HFR) issues will be analyzed for the DFIG system based on DPC under inductive weak grid in this article. Based on the simplified high-frequency impedance model of the DFIG system based on DPC and the Bode diagram of equivalent single-input single-output impedance, it is found that a strong frequency coupling related to the components of system delay in off-diagonal admittance will cause the high-frequency phase to change periodically for the DFIG system. Therefore, the DFIG system will show capacitive or even negative resistance to introduce potential risk of HFR at high frequency. The stability of a DFIG system will be further deteriorated as the system delay increases. An impedance reshaping control strategy is proposed to reduce the degree of frequency coupling at high frequency for eliminating the negative effects of system delay, so that HFR can be suppressed. The experimental results validate the availability of the proposed reshaping control strategy.
机译:直接电源控制(DPC)可以降低控制器的复杂性,并增强双馈感应发电机(DFIG)系统的动态响应。本文基于电感弱网格下基于DPC的DPC的DFIG系统将分析高频谐振(HFR)问题。基于基于DPC的DFIG系统的简化高频阻抗模型和等效单输入单输出阻抗的BODE图,发现与截止对角线导入的系统延迟组件相关的强频耦合将导致高频相对于DFIG系统定期更改。因此,DFIG系统将显示电容或甚至负性,以引入高频HFR的潜在风险。随着系统延迟增加,DFIG系统的稳定性将进一步恶化。建议采用阻抗重塑控制策略来降低高频耦合程度,以消除系统延迟的负面影响,从而可以抑制HFR。实验结果验证了拟议的重塑控制策略的可用性。

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