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An equivalent model for single and three phase power rectifiers with active loads

机译:有源负载单相和三相功率整流器的等效模型

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We show that in active load rectifier case, superposition method can be used to construct a simpler model. Although such a rectifier is highly non-linear, the superposition method can be operated when dividing the cycle period into diode conduction and non-conduction intervals. The superposition operation over the active load rectifier provides two equivalent circuits: a circuit that contains only the power source and a circuit that contains only the active load (an AC current source as a common model of an active load). Since the former contains a passive load rectifier, we are left with the problem of analyzing a single-phase active load. Because an equivalent model for the single-phase active load contains only a current source in parallel to a resistor, the analysis complexity of the whole system is greatly reduced. In addition, we show that every rectifier model can be defined either as a Norton form, in which the load consists of a current source connected in parallel to the resistance-capacitance load, or as Thevenin form, in which the load consists of a voltage source connected in series to the resistance-capacitance load. Theoretical results are validated through simulations, which show a very high correlation when comparing the ordinary model parameters (such as input current THD) with the equivalent one. These findings can give us a simpler model for an active load rectifier investigation and an easier mathematical analyzing.
机译:我们表明,在有源负载整流器的情况下,可以使用叠加方法来构建更简单的模型。尽管这种整流器是高度非线性的,但是当将周期划分为二极管导通和非导通间隔时,可以使用叠加方法。有源负载整流器上的叠加操作提供了两个等效电路:仅包含电源的电路和仅包含有源负载的电路(交流电流源是有源负载的通用模型)。由于前者包含一个无源负载整流器,因此剩下的问题是分析单相有功负载。由于单相有功负载的等效模型仅包含与电阻并联的电流源,因此大大降低了整个系统的分析复杂性。此外,我们表明,每个整流器模型都可以定义为诺顿形式(其中负载由与电阻电容负载并联的电流源组成)或戴维宁形式(其中负载由电压组成)电源串联连接到电阻电容负载。理论结果通过仿真验证,当将普通模型参数(例如输入电流THD)与等效模型参数进行比较时,它们显示出很高的相关性。这些发现可以为有源负载整流器研究提供更简单的模型,并为数学分析提供更简单的方法。

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