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A novel VSC-HVDC link model for dynamic power system simulations

机译:用于动态电力系统仿真的新型VSC-HVDC链路模型

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This paper introduces a new RMS model of the VSC-HVDC link. The model is useful for assessing the steady-state and dynamic responses of large power systems with embedded back-to-back and point-to-point VSC-HVDC links. The VSC-HVDC model comprises two voltage source converters (VSC) linked by a DC cable. Each VSC is modelled as an ideal phase-shifting transformer whose primary and secondary windings correspond, in a notional sense, to the AC and DC buses of the VSC. The magnitude and phase angle of the ideal phase-shifting transformer represent the amplitude modulation ratio and the phase shift that exists in a PWM converter to enable either generation or absorption of reactive power purely by electronic processing of the voltage and current waveforms within the VSC. The mathematical model is formulated in such away that the back-to-back VSC-HVDC model is realized by simply setting the DC cable resistance to zero in the point-to-point VSC-HVDC model. The Newton-Raphson method is used to solve the nonlinear algebraic and discretised differential equations arising from the VSC-HVDC, synchronous generators and the power grid, in a unified frame-of-reference for efficient, iterative solutions at each time step. The dynamic response of the VSC-HVDC model is assessed thoroughly; it is validated against the response of a detailed EMT-type model using Simulink (R). The solution of a relatively large power system shows the ability of the new dynamic model to carry out large-scale power system simulations with high efficiency. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍了VSC-HVDC链路的新RMS模型。该模型可用于评估具有嵌入式背对背和点对点VSC-HVDC链路的大型电力系统的稳态和动态响应。 VSC-HVDC模型包括两个通过直流电缆链接的电压源转换器(VSC)。每个VSC均被建模为理想的移相变压器,从概念上讲,其初级绕组和次级绕组对应于VSC的AC和DC总线。理想移相变压器的幅度和相角代表了PWM转换器中存在的振幅调制比和相移,以纯粹通过对VSC内的电压和电流波形进行电子处理来生成或吸收无功功率。建立数学模型时,只需在点对点VSC-HVDC模型中将DC电缆电阻设置为零即可实现背靠背VSC-HVDC模型。 Newton-Raphson方法用于在统一的参考系中求解由VSC-HVDC,同步发电机和电网产生的非线性代数和离散微分方程,以在每个时间步进行有效的迭代求解。全面评估了VSC-HVDC模型的动态响应;使用Simulink(R)针对详细的EMT类型模型的响应进行了验证。相对较大的电力系统的解决方案显示了新的动态模型具有高效执行大规模电力系统仿真的能力。 (C)2015 Elsevier B.V.保留所有权利。

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