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Low-THD, Fast-Transient, and Cost-Effective Synchronous-Frame Repetitive Controller for Three-Phase UPS Inverters

机译:适用于三相UPS逆变器的低THD,快速瞬变和经济高效的同步帧重复控制器

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摘要

This paper presents a novel synchronous-frame repetitive controller for three-phase UPS inverters. Distinguished from conventional repetitive control techniques, the proposed synchronous-frame approach minimizes the repetitive control time delay to one-sixth of the fundamental period such that the dynamic response is significantly improved. In order to overcome the harmonic distortions under severe load conditions (e.g., unbalanced and nonlinear), in this paper, three synchronous rotating frames are deliberately selected, in each of which the repetitive controller is incorporated. Resultantly, the $(6n pm 1){rm th}$ harmonics as well as the triplen harmonics are compensated. Moreover, a high-performance fourth-order linear phase infinite-impulse-response filter is applied to further enhance the accuracy of steady-state tracking. The proposed controller is programmed on the 16-bit fixed-point digital signal processor (TI TMS320LF2407) and eliminates high-resolution current sensors for cost effectiveness. Simulations and experimental tests have been carried out based on an 18-kW three-phase UPS system. Low total harmonic distortion (<2%) has been achieved under heavily distorted nonlinear load and unbalanced load. Fast dynamic response has been demonstrated during step load transients.
机译:本文提出了一种新颖的用于三相UPS逆变器的同步帧重复控制器。与传统的重复控制技术不同,所提出的同步帧方法将重复控制时间延迟减至基本周期的六分之一,从而显着改善了动态响应。为了克服苛刻负载条件下(例如,不平衡和非线性)的谐波畸变,本文故意选择了三个同步旋转框架,每个框架中均包含重复控制器。结果,$(6n pm 1){rm th} $谐波以及三次谐波被补偿。此外,采用了高性能的四阶线性相位无限冲激响应滤波器,可以进一步提高稳态跟踪的精度。拟议中的控制器在16位定点数字信号处理器(TI TMS320LF2407)上进行了编程,并取消了高分辨率电流传感器以实现成本效益。基于18 kW的三相UPS系统进行了仿真和实验测试。在严重失真的非线性负载和不平衡负载下,实现了较低的总谐波失真(<2%)。在阶跃负载瞬变过程中已证明了快速的动态响应。

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