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Harmonic Filter Design for Variable Frequency Drives in Marine Vessels based on a Systematic Power Quality Assessment and Monitoring Methodology

机译:基于系统电能质量评估和监测方法的海船中变频驱动的谐波滤波器设计

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In the maritime industry, high fuel costs encourage the use of Variable Frequency Drives (VFDs) for energy saving applications. However, introduction of such nonlinear loads in the vessel's power distribution network induces harmonics, which can lead to potential risks if are not predicted and controlled. In this paper, several harmonic attenuation options are initially investigated for VFDs used in marine vessels. A systematic power quality analysis and monitoring methodology is then proposed to assess the size of required harmonic filters in order to satisfy voltage harmonic distortion limits imposed by marine classification societies when VFDs are applied to motors. The effectiveness of the proposed power quality analyzing procedure and monitoring methodology is evaluated through a real practical example, which includes harmonic filter design for VFDs applied to engine room fan and pump motors that operate constantly at sea-going mode in a typical tanker vessel. Experimental results obtained from power quality measurements verify that design complies with relevant marine harmonic standards even in the worst case of operation.
机译:在海事行业中,高燃料成本鼓励使用可变频率驱动器(VFDS)来节能应用。然而,在船舶配电网络中引入这种非线性载荷引起谐波,这可能导致潜在的风险,如果未预测和控制。在本文中,最初研究了几种谐波衰减选项对于在海洋血管中使用的VFDS。然后提出了一种系统的电力质量分析和监测方法,以评估所需谐波过滤器的尺寸,以满足vfds对电动机的船舶分类社会施加的电压谐波失真限制。通过真正的实际例子评估了所提出的电力质量分析程序和监测方法的有效性,包括用于施加到发动机室风扇和泵电机的VFD谐波滤波器设计,该泵电机在典型的油轮容器中不断地运行海上模式。从电力质量测量获得的实验结果核实,即使在最坏的情况下,设计符合相关的海洋谐波标准。

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