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Nonminimum Phase Compensation in VSC-HVDC Systems for Fast Direct Voltage Control

机译:用于快速直流电压控制的VSC-HVDC系统中的非最小相位补偿

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摘要

Newly developed VSC-HVDC systems are reaching power levels of up to 1000 MW. At this power level, the nonminimum phase behavior of the VSC-HVDC systems’ dc plant becomes a threat to the stability of the direct voltage for fast dc control-loop dynamics. This paper presents a novel compensation scheme, called RHP-zero shifting+damping, designed to deal with the nonminimum phase dynamics of the dc plant by adding additional compensation loops to the current controller of the VSC-HVDC system. The compensation scheme can work along with linear controllers and allows the closed-loop bandwidth of the direct voltage controller to be increased without affecting the direct voltage stability of high-power VSC-HVDC systems. As a result, the direct voltage variations are significantly reduced during power changes in the ac or dc network. The performance of the compensation scheme is evaluated through simulations and corroborated in a 1-kW experimental test bed.
机译:新开发的VSC-HVDC系统的功率水平高达1000 MW。在此功率水平下,VSC-HVDC系统的直流设备的非最小相位行为将威胁直流电压的稳定性,以实现快速的DC控制回路动态特性。本文提出了一种新颖的补偿方案,称为RHP零位移+阻尼,旨在通过在VSC-HVDC系统的电流控制器中添加额外的补偿环路来应对直流设备的非最小相位动态。该补偿方案可以与线性控制器一起使用,并允许在不影响大功率VSC-HVDC系统的直流电压稳定性的情况下增加直流电压控制器的闭环带宽。结果,在交流或直流网络中的功率变化期间,直流电压的变化大大降低。补偿方案的性能通过仿真进行评估,并在1kW的实验测试床上得到证实。

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