Modeling Lyapunov Control-Based Selective Harmonic Compensated Single-Phase Inverter in the Dynamic Phasor Domain

IF 7.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Udoka C. Nwaneto;Seyed Ali Seif Kashani;Andrew M. Knight
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引用次数: 0

Abstract

Single-phase grid-forming inverters are commonly used in uninterruptible power supply (UPS) systems that feed single-phase critical loads in homes, data centers, and hospitals. With the increasing use of power electronics-interfaced loads, single-phase UPS inverters are being designed to exhibit characteristics such as low total harmonic distortion (THD) in output voltage, fast dynamic response, and strong robustness against large changes in load, to ensure a seamless operation of critical loads. The Lyapunov-function-based control strategy is a popular method to provide these characteristics in UPS inverters. However, most studies and designs related to Lyapunov-function-controlled single-phase UPS inverters are conducted by using detailed switching models. While detailed switching models accurately represent the true dynamics of power converters, simulating these models with nonlinear control schemes requires small time steps to produce accurate results. To address this limitation, we propose a new model of Lyapunov-function-based single-phase grid-forming inverter using the dynamic phasor (DP) method. The DP method transforms time-domain signals into slow-varying signals, enabling the use of larger time steps in simulations, which results in shorter simulation times. In the proposed DP model, the Lyapunov energy function is constructed in the DP domain using the dominant harmonics of the inverter output voltage and output current as state variables. The high accuracy and superior computational speed of the proposed DP model are validated through comparison with results obtained from a detailed model with natural-frame-based Lyapunov-function control. Experimental test results confirm the validity and high accuracy of the proposed DP-based method of modeling Lyapunov-function-controlled single-phase grid-forming inverter.
基于李雅普诺夫控制的选择性谐波补偿单相逆变器动态相量域建模
单相并网逆变器通常用于不间断电源(UPS)系统,为家庭、数据中心和医院的单相关键负载供电。随着电力电子接口负载的使用越来越多,单相UPS逆变器被设计成具有输出电压总谐波失真(THD)低、动态响应快、对负载变化的鲁棒性强等特性,以确保关键负载的无缝运行。基于李雅普诺夫函数的控制策略是UPS逆变器中提供这些特性的常用方法。然而,大多数与李雅普诺夫函数控制单相UPS逆变器相关的研究和设计都是通过使用详细的开关模型进行的。虽然详细的开关模型准确地代表了电源变换器的真实动态,但用非线性控制方案模拟这些模型需要小的时间步长才能产生准确的结果。为了解决这一限制,我们提出了一种基于李雅普诺夫函数的单相并网逆变器的动态相量(DP)方法。DP方法将时域信号转换为慢变信号,从而可以在仿真中使用更大的时间步长,从而缩短仿真时间。在提出的DP模型中,以逆变器输出电压和输出电流的主导谐波作为状态变量,在DP域中构造Lyapunov能量函数。通过与基于自然框架的李雅普诺夫函数控制的详细模型结果的比较,验证了该模型具有较高的精度和计算速度。实验结果验证了该方法的有效性和准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
13.50
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