高效模拟单相 PWM 逆变器的混合建模方法

Mario Bortolotto, Gustavo Migoni
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引用次数: 0

摘要

本文提出了一种新的建模方法,可在损失最少信息的情况下对脉宽调制(PWM)逆变器进行精确而快速的仿真。这种方法的理念是将精确开关模型和快速平均模型结合起来使用。开关模型用于瞬态演化,平均模型用于周期性稳态 (PSS) 调节。这样,即使在长期仿真中,由于中央处理器(CPU)的要求而无法使用开关模型,也能获得逆变器的开关行为。新颖的建模策略采用了一种算法,该算法可根据某些变量的变化,检测瞬态或周期性稳态条件,并自动执行两种模型之间的换向。此外,在使用精确切换模型时,上述算法还能估算平均模型参数。因此,在创建模型时无需计算平均参数,而且无论工作点在哪里,都能获得精确的结果。本文还报告了单相 PWM 升压逆变器模型的仿真实验,以阐明建模策略的思路,并展示了所提建模方法在仿真时间和精度方面的优势。本文使用 Modelica 语言对新颖的建模策略进行编程,并建立了升压逆变器实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mixed modeling approach for efficient simulation of single-phase PWM inverters
This paper proposes a new modeling approach to obtain accurate and fast simulations of pulse width–modulated (PWM) inverters with minimal loss of information. The idea of this methodology combines the use of precise switched models and fast averaged models. Switched models are used during transient evolution, and averaged models on periodic steady-state (PSS) regimen . In this way, the switching behavior of an inverter can be obtained even in the context of a long-term simulation where switched models cannot be used because of the central processing unit (CPU) requirement. The novel modeling strategy implements an algorithm that, based on the evolution of some variables, detects the transient or periodic steady state condition and automatically performs the commutation between both models. Furthermore, the mentioned algorithm also estimates the averaged model parameters when the precise switched model is used. Consequently, it is not necessary to calculate the average parameters to create the model and accurate results are obtained regardless of the operating point. This paper also reports simulation experiments of a single-phase PWM boost inverter model to clarify the idea of the modeling strategy and shows the simulation time and accuracy advantages of the proposed modeling approach. The Modelica language was used to program the novel modeling strategy and build the boost inverter examples.
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