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Multi Units of Three Phase Photovoltaic using Band Pass Filter to Enhance Power Quality in Distribution Network under Variable Temperature and Solar Irradiance Level

机译:在可变温度和太阳辐射水平下,使用带通滤波器的多单元三相光伏发电可提高配电网的电能质量

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The paper proposed power quality enhancement on three phase grid of point common coupling (PCC) bus due to integration of multi units of photovoltaic (PV) to 380 volt (phase-phase) 50 Hz low voltage distribution network under variable temperature and irradiance level. The band pass filter models (single tuned and double tuned) were installed to improvement power quality on the conditions i.e. without filter, with single tuned filter, and with double tuned filter. Multi units of PV generator without filter, with single tuned, and with double tuned filter at all temperatures and irradiance levels resulted in relatively stable phase voltage (308 and 310 volt), so able to generate an unbalanced voltage of 0%. The maximum phase current for the system without filter at all temperatures and radiation levels of 9.8, 12.5, and 10 ampere respectively, resulted in an unbalanced current of 16.10% . Under the same condition, single tuned and double tuned filters were able to balance phase current to 10.45 A and 10.44 ampere respectively, resulting in an unbalanced current of 0%. Implementation of single tuned and double tuned filters was able to reduce unbalance current according to ANSI/IEEE 241-1990. At constant temperature and irradiance increased, both average voltage and current harmonics also increased. Double tuned active filter was the most effective to suppress the 11 th and 13 th harmonics so that capable to migitate average voltage and current harmonics better than system using single tuned filter which could only reduce 5 th harmonic within IEEE 519-1992.
机译:本文提出了在可变温度和辐照度下,由于将光伏(PV)的多个单元集成到380伏(相-相)50 Hz低压配电网络中,从而提高点公共耦合(PCC)总线三相电网的电能质量。安装了带通滤波器模型(单调谐和双调谐)以提高在以下条件下的电能质量:无滤波器,单调谐滤波器和双调谐滤波器。在所有温度和辐照度水平下,无滤波器,单调谐和双调谐滤波器的多组PV发电机可产生相对稳定的相电压(308和310伏),因此能够产生0%的不平衡电压。不带滤波器的系统在所有温度和辐射水平分别为9.8、12.5和10安培时的最大相电流,导致不平衡电流为16.10%。在相同条件下,单调谐和双调谐滤波器能够分别将相电流平衡到10.45 A和10.44安培,从而产生0%的不平衡电流。根据ANSI / IEEE 241-1990,单调谐和双调谐滤波器的实现能够减少不平衡电流。在恒温和辐照度增加的情况下,平均电压和电流谐波也都增加。双调谐有源滤波器最有效地抑制了11和13次谐波,因此与使用单调谐滤波器的系统相比,它能够更好地降低平均电压和电流谐波,而单调谐滤波器只能降低IEEE 519-1992中的5次谐波。

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