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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >An Economic Offline Technique for Estimating the Equivalent Circuit of Aluminum Electrolytic Capacitors
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An Economic Offline Technique for Estimating the Equivalent Circuit of Aluminum Electrolytic Capacitors

机译:一种经济的离线估算铝电解电容器等效电路的技术

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摘要

This paper presents an experimental technique that allows the determination of both reactance and equivalent series resistance (ESR) intrinsic values of aluminum electrolytic capacitors. The ESR is one of the most critical problems of static converters that operate near the resonance frequency of electrolytic capacitors. An increased ESR value leads to a significant increase in the alternate component of the output voltage, requiring constant action of the control system. In addition, manufacturers usually do not give the ESR value, but do give the maximum dissipation factor (DF), at the operating frequency of 120 Hz. From the DF, it is possible to determine the maximum ESR value at 120 Hz. Since the ESR value changes with frequency, and static converters operate at much higher ranges, designers need to compute its value at the operating frequency of these converters to reach the best design proposal. Moreover, almost all capacitor manufacturers give the capacitance value with a tolerance of 20%, whereas the proposed technique permits computation of its value with higher accuracy. Additionally, at low frequencies, if the ESR value of the capacitor is known, through its comparison with the maximum value given by the manufacturer, it is possible to estimate its condition. To validate the proposed technique and to demonstrate its applicability, some experimental results are presented and compared with the ones obtained with an impedance gain-phase analyzer and the manufacturers' specifications for four different capacitors.
机译:本文介绍了一种实验技术,该技术可以确定铝电解电容器的电抗和等效串联电阻(ESR)本征值。 ESR是在电解电容器的谐振频率附近工作的静态转换器的最关键问题之一。增大的ESR值会导致输出电压的交流分量显着增加,从而需要控制系统的恒定作用。此外,制造商通常不给出ESR值,而是给出120 Hz的工作频率下的最大耗散因数(DF)。从DF可以确定120 Hz时的最大ESR值。由于ESR值随频率变化,并且静态转换器在更高的范围内工作,设计人员需要在这些转换器的工作频率下计算其值,以达到最佳设计方案。此外,几乎所有电容器制造商都给出了20%的容差电容值,而所提出的技术允许以更高的精度计算其值。另外,在低频下,如果已知电容器的ESR值,则可以通过将其与制造商提供的最大值进行比较来估计其状态。为了验证所提出的技术并证明其适用性,给出了一些实验结果,并与使用阻抗增益相位分析仪获得的实验结果以及制造商针对四个不同电容器的规格进行了比较。

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