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首页> 外文期刊>IEEE Transactions on Power Electronics >Virtual Positive-Damping Reshaped Impedance Stability Control Method for the Offshore MVDC System
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Virtual Positive-Damping Reshaped Impedance Stability Control Method for the Offshore MVDC System

机译:用于海上MVDC系统的虚拟正阻阻抗阻抗稳定性控制方法

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摘要

For the offshore medium-voltage direct-current (MVdc) system, the dc-side medium voltage can easily cause highfrequency oscillation and even instability owing to the complex impedance interactions. The virtual-resistance stability control method aiming at rectifier station is first introduced from lowvoltage dc micro-grid application for mitigating its dc-side oscillation without affecting the load performance of the inverter station. Viewed from the dc input terminal, the small-signal dc impedance modeling of the overall system is established by considering the influences of dc cable, ac grid inductance, and input-parallel outputseries structure of rectifier station. Then, the oscillation mechanism is analyzed by the impedance-based Nyquist stability criterion. It is found that only the virtual resistance deteriorates the stability of the MVdc system under the low switching-frequency condition, because the high-frequency oscillation peak may easily exceed the narrow control bandwidth of the rectifier station and fall into the negative-damping region, resulting in a poor robustness against the dc cable variation. To address this issue, the virtual positivedamping reshaped impedance stability control method is further proposed to maintain a larger positive damper in the actual oscillation frequency range regardless of the variation of dc cable length. Thus, the dc-side oscillation of the offshore MVdc system is effectively mitigated at the low switching frequency. Finally, simulation and experimental results validate the proposed control method.
机译:对于海上中电压直流(MVDC)系统,由于复杂的阻抗相互作用,直流侧介质电压很容易引起高频振荡甚至不稳定性。针对整流器站的虚拟电阻稳定性控制方法首先从低压DC微电网应用引入,以减轻其直流侧振荡而不影响逆变器站的负载性能。从DC输入端子看,通过考虑DC电缆,交流电流电流电感和输入并行输出输出器结构的整流站的影响,建立了整个系统的小信号直流阻抗建模。然后,通过基于阻抗的奈奎斯特稳定性标准分析振荡机制。发现只有虚拟电阻在低开关频率条件下才能降低MVDC系统的稳定性,因为高频振荡峰值可能很容易超过整流器站的窄控制带宽并落入负阻尼区域,导致对直流电缆变化的稳健性差。为了解决这个问题,进一步提出了虚拟定位的被重塑阻抗稳定性控制方法以在实际振荡频率范围内保持更大的正阻尼器,而不管直流电缆长度的变化。因此,在低开关频率下有效地减轻了近海MVDC系统的DC侧振荡。最后,仿真和实验结果验证了所提出的控制方法。

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