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DC-side harmonic analysis and DC filter design in hybrid HVDC transmission systems

机译:混合高压直流输电系统的直流侧谐波分析和直流滤波器设计

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Hybrid high-voltage direct current (HVDC) transmission is a new transmission structure that uses line commutated converter (LCC) at the rectifier side and voltage source converter (VSC) at the inverter side. This study proposes a method to calculate DC side harmonic currents of hybrid HVDC transmission systems and design filters to mitigate DC-side low-frequency voltage pulsations. First, an equivalent harmonic analysis model of modular multilevel converter (MMC) is deduced according to the relationship among different harmonic components. The harmonic voltage expressions at DC side of 12-pulse LCC are deduced by combining the three-pulse harmonic voltage source model and FFT decomposition. On this basis, the expressions for harmonic currents are derived by multiplying the harmonic voltage transfer function and transfer admittance equation of DC network and are solved for the inverse Laplace transform. Two different types of DC filters are designed according to the requirements of DC filter on decaying specific order harmonic currents. The influence of partial element decay on the transfer characteristic of filter is analyzed, and appropriate partial component dissipation parameters are applied. The decay pole near the harmonic resonance frequency is configured to achieve reasonable DC-filtering results. Simulation results of a hybrid HVDC transmission system demonstrate the effectiveness of the proposed analysis model and filter design method.
机译:混合高压直流(HVDC)传输是一种新的传输结构,在整流器侧使用线路换向转换器(LCC),在逆变器侧使用电压源转换器(VSC)。本研究提出了一种计算混合高压直流输电系统的直流侧谐波电流的方法,并设计了可减轻直流侧低频电压脉动的滤波器。首先,根据不同谐波分量之间的关系推导了模块化多电平变换器(MMC)的等效谐波分析模型。结合三脉冲谐波电压源模型和FFT分解,推导了12脉冲LCC直流侧的谐波电压表达式。在此基础上,通过将谐波电压传递函数与直流网络的传递导纳方程相乘,得出谐波电流的表达式,并求解拉普拉斯逆变换。根据直流滤波器对衰减特定阶次谐波电流的要求,设计了两种不同类型的直流滤波器。分析了部分元素衰减对滤波器传递特性的影响,并应用了适当的部分成分耗散参数。配置谐波谐振频率附近的衰减极点以获得合理的直流滤波结果。混合高压直流输电系统的仿真结果证明了所提出的分析模型和滤波器设计方法的有效性。

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