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A feasibility study of the classical computational model used to represent power capacitors by comparing the simulation response and the real power capacitors response tested in a controlled laboratory environment

机译:通过比较模拟响应和在受控实验室环境中测试的实际功率电容器响应,来代表功率电容器的经典计算模型的可行性研究

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This paper has as aim to present a comparative study between the classic power capacitors model implemented in the software dedicated to power quality analysis and the real power capacitors response tested in a controlled laboratory environment. This classic model is composed by a resistance connected in series with a capacitive element and is not sensitive to harmonic distortion. MATLAB - Simulink was used to model the system's components and to simulate the processes. The two regular technologies applied to manufactured power capacitors, well-known as "all-film" capacitor and as metalized polypropylene capacitor, were used for the laboratory tests. The simulation results were analyzed and compared to the laboratory tests data. Results show that the classical model capacitor has excellent accuracy when fed by a sinusoidal waveform. However, when fed by a nonsinusoidal waveform, it has demonstrated limitations that will be reported in this paper.
机译:本文旨在对专用于电能质量分析的软件中实现的经典功率电容器模型与在受控实验室环境中测试的实际功率电容器响应之间进行比较研究。该经典模型由与电容元件串联的电阻组成,并且对谐波失真不敏感。 MATLAB-Simulink用于对系统组件进行建模并模拟过程。实验室测试使用了两种应用于制造的功率电容器的常规技术,即众所周知的“全膜”电容器和金属化聚丙烯电容器。分析了仿真结果,并将其与实验室测试数据进行了比较。结果表明,当以正弦波波形馈电时,经典模型电容器具有出色的精度。但是,当由非正弦波形馈电时,已经证明了局限性,将在本文中进行报道。

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