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Harmonics mitigation for offshore platform using active filter and line reactor methods

机译:使用有源滤波器和线路电抗器方法减轻海上平台的谐波

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Propose of this study is to analyze power system profile especially harmonic at one of Offshore Platform in Indonesia. Field survey was conducted and found that total harmonic distortion (THD) both of voltage and current exceed limitation as recommended in IEEE 519-1992, THD-i 11.76% ZU A, 11.29% ZUD, 31.11% ZUG, and unbalance load exceed 5%. Analysis using ETAP 12.6 shows harmonic reduction could be achieved by installing multi-tuned passive harmonic filters. However, since the result of actual measurement shows unbalance power flow that reflect the dynamic impedance on the network system, therefore the passive filter would not effective to reduce harmonics. On the other case active filter type is not sensitive on dynamic impedance, due to its internal controller capable to compensate and cancel harmonic currents in any condition. Based on the above considerations, it is recommended to install a line reactor on each VFD and active harmonic filter on respective Point of Common Coupling (PCC) with sizing 60A and 4% in ZUA; 75A and 4% in ZUD and 120A and 3% impedance in ZUG for active filter and line reactor impedance respectively. The final THD-i in each NUI as follow 5.87%, 4.95% and 6.65%.
机译:这项研究的目的是分析印度尼西亚海上平台之一的电力系统轮廓,特别是谐波。进行了现场调查,发现电压和电流的总谐波失真(THD)都超过了IEEE 519-1992中建议的限制,THD-i 11.76%ZUA,11.29%ZUD,31.11%ZUG,不平衡负载超过5%。 。使用ETAP 12.6进行的分析表明,可以通过安装多调谐无源谐波滤波器来实现谐波降低。但是,由于实际测量的结果显示出不平衡的功率流,反映了网络系统上的动态阻抗,因此无源滤波器将无法有效减少谐波。另一方面,有源滤波器类型对动态阻抗不敏感,这是因为其内部控制器能够在任何情况下补偿和消除谐波电流。基于上述考虑,建议在每个VFD上安装一个进线电抗器,并在各自的公共耦合点(PCC)上安装有源谐波滤波器,尺寸分别为60A和ZUA的4%。有源滤波器和线路电抗器的阻抗分别在ZUD中为75A和4%,在ZUG中为120A和3%阻抗。每个NUI中的最终THD-i分别为5.87%,4.95%和6.65%。

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