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A Novel Method for On-Line Monitoring and Managing of Electrolytic Capacitors of DC Voltage Link PWM Converters

机译:在线监测和管理直流电压链路PWM转换器的电解电容器的新方法

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The paper presents a novel concept for monitoring and managing the DC link electrolytic capacitors of PWM converters, especially for drive applications. The unit performs on-line identification of the equivalent series resistance (ESR) of the capacitor in order to detect the end-of-life cycle to permit a preventive maintenance of the converter prior to a capacitor failure. The ESR detection scheme is based on the determination of the capacitor AC losses calculated from voltage/current measurements using a simple single-chip microcontroller. The unit is designed as a small printed circuit board located between the capacitors screw terminals and the converter busbars. This also opens the possibility to easily detect the capacitor's operating temperature which is important for the evaluation of the identified ESR values. The intention is, furthermore, that the monitoring unit operates without a separate power supply and draws its supply current out of the power capacitor. The measurement results of the individual converter capacitors are gathered by an opto-isolated three-wire bus. Finally, besides the ESR detection the monitoring unit further allows an energy efficient capacitor voltage balancing in case a series array of capacitors is used. As opposed to conventional resistor voltage divider networks this method reduces the balancing losses to a very large extent by avoiding high quiescent currents.The paper gives a short introduction into the life cycle problems of electrolytic capacitors, presents a survey of known monitoring concepts and describes a novel concept based on capacitor power loss determination. Subsequently, a laboratory prototype of the proposed monitoring and managing system based on a single chip microprocessor is demonstrated.
机译:本文提出了一种新颖的概念,用于监视和管理PWM转换器的直流链路电解电容器,特别是对于驱动器应用。该单元对电容器的等效串联电阻(ESR)进行在线识别,以检测寿命周期,从而在电容器出现故障之前对转换器进行预防性维护。 ESR检测方案基于对电容器AC损耗的确定,该损耗是通过使用简单的单芯片微控制器从电压/电流测量计算得出的。该单元设计为位于电容器螺丝端子和转换器母线之间的小型印刷电路板。这也为轻松检测电容器的工作温度提供了可能性,这对于评估已识别的ESR值很重要。此外,意图是,监视单元在没有单独的电源的情况下运行并且将其供电电流从功率电容器中抽出。单个转换器电容器的测量结果通过光隔离的三线总线收集。最后,除了ESR检测外,在使用一系列电容器阵列的情况下,监控单元还可以实现节能的电容器电压平衡。与传统的电阻分压器网络相反,该方法通过避免高静态电流而在很大程度上降低了平衡损耗。本文简要介绍了电解电容器的寿命周期问题,概述了已知的监控概念并描述了一种基于电容器功率损耗确定的新颖概念。随后,展示了所提出的基于单片机的监视和管理系统的实验室原型。

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