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Modeling method for power electronic system based on Hamilton principle of analytical mechanics

机译:基于解析力学的汉密尔顿原理的电力电子系统建模方法

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Traditional modeling method for power electronic system is limited in application and strictly depends on system topology structure. Therefore, utilizing the analogical relation of physical quantities between mechanical system and power electronic system, this paper presents a modeling method based on Hamilton principle of analytical mechanics for power electronic system. The method is not only more systematic, but also has clear physical concept and wide application range towards the above disadvantages existing in the traditional modeling method. Meanwhile, the paper illustrates this modeling procedure, taking three-phase voltage-source PWM rectifier which has wide application in the power electronic field as an example. Moreover, design method of power electronic system controller based on Hamilton principle is presented and has been experimentally verified for PWM rectifier since it is convenient to design the system controller in terms of energy using the Hamilton modeling method. Simulation experiment results show that the designed PWM rectifier control system has better steady and dynamic performance.
机译:电力电子系统的传统建模方法应用范围有限,严格依赖于系统拓扑结构。因此,利用机械系统与电力电子系统之间物理量的类比关系,提出了一种基于汉密尔顿原理的电力电子系统分析力学建模方法。该方法不仅系统性强,而且针对传统建模方法存在的上述缺点,具有清晰的物理概念和广泛的应用范围。同时,本文以在电力电子领域具有广泛应用的三相电压源PWM整流器为例,说明了该建模过程。此外,提出了一种基于汉密尔顿原理的电力电子系统控制器的设计方法,并已针对PWM整流器进行了实验验证,因为使用汉密尔顿建模方法可以方便地在能量方面设计系统控制器。仿真实验结果表明,所设计的PWM整流器控制系统具有较好的稳态和动态性能。

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