首页> 外文会议>2012 IEEE Power Electronics and Machines in Wind Applications. >Hybrid damping of grid-tie inverter output harmonics for resonance rejection wind park stability under high penetration
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Hybrid damping of grid-tie inverter output harmonics for resonance rejection wind park stability under high penetration

机译:并网逆变器输出谐波的混合阻尼,可在高穿透率下抑制共振并提高风电场的稳定性

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摘要

Grid-tie inverters are usually connected to Pad-Mount Transformers (PMT) through passive filters. Most grid-tie inverter manufacturers design these passive filters to eliminate high frequency current ripples and switching harmonics generated by the switching actions of inverters. Under high wind power penetration output power filters are susceptible to create severe resonance due to their interaction with the grid voltage harmonics and transmission line impedances. This resonance generates high harmonics which are not only not in compliance with the IEEE 519 power quality requirement, but also are very harmful to power system components. This paper proposes a hybrid damping approach which combines the passive damping of the filter with a physical resistor and an active damping of the inverter output harmonics with grid voltage harmonics feed-forward. The approach takes into account the passive filters interaction with the grid through impedance analysis under high wind power penetration. Simulations and field tests are shown to demonstrate the validity of the proposed approach.
机译:并网型逆变器通常通过无源滤波器连接到衬垫式变压器(PMT)。大多数并网逆变器制造商都设计了这些无源滤波器,以消除由逆变器的开关动作产生的高频电流纹波和开关谐波。在高风能渗透下,由于输出功率滤波器与电网电压谐波和传输线阻抗的相互作用,因此很容易产生严重的谐振。这种谐振会产生高谐波,这不仅不符合IEEE 519电源质量要求,而且对电源系统组件也非常有害。本文提出了一种混合阻尼方法,该方法将滤波器的无源阻尼与物理电阻器相结合,以及逆变器输出谐波与电网电压谐波前馈的有源阻尼相结合。该方法通过在高风力渗透下的阻抗分析考虑了无源滤波器与电网的相互作用。仿真和现场测试表明了该方法的有效性。

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