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Effect of reactive power control on stability of DC-link voltage control in VSC connected to weak grid

机译:无功功率控制对弱电网VSC直流母线电压控制稳定性的影响

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In this paper, effect of reactive power control (RPC) on the stability of DC-link voltage control (DVC) in voltage source converter (VSC) when attached to weak grid is investigated. In weak grid, disturbance in DVC leads variations in terminal voltage and makes RPC respond. In turn, RPC contributes to power output variation and influences DVC. RPC behaves as a lagging regulator for DVC and results in lagging active power output. Referencing to stability analysis theory for synchronous machine, damping and restoring components for DVC are proposed. Stability of DVC affected by RPC is analyzed by evaluating the influence of RPC on damping and restoring components. Additional damping component provided by RPC will become smaller with reduction of grid strength. In addition, when the bandwidth of RPC is close to that of DVC, effect of RPC on DVC is in maximum extent. The time-domain model of 1.5-MW full-scale wind turbine was built in Matlab/Simulink and simulation results validate the analysis above.
机译:本文研究了无功功率控制(RPC)对电压源转换器(VSC)中连接到弱电网的直流链路电压控制(DVC)稳定性的影响。在弱电网中,DVC中的干扰会导致端子电压变化,并使RPC响应。反过来,RPC会导致功率输出变化并影响DVC。 RPC充当DVC的滞后调节器,并导致有功功率输出滞后。参照同步电机的稳定性分析理论,提出了DVC的阻尼和恢复部件。通过评估RPC对阻尼和恢复组件的影响,分析了受RPC影响的DVC的稳定性。随着网格强度的降低,RPC提供的其他阻尼组件将变得更小。另外,当RPC的带宽接近DVC的带宽时,RPC对DVC的影响最大。在Matlab / Simulink中建立了1.5兆瓦满量程风力涡轮机的时域模型,仿真结果验证了以上分析。

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