基于参考系变换的UPS逆变器多环控制跟踪误差最小化

R. Razi, M. Monfared, Alireza Hadizadeh
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引用次数: 2

摘要

现有的不间断电源(UPS)逆变器控制方法存在的主要问题是过于复杂。用简单的比例控制器在多环控制方法中成功地解决了这一问题。然而,使用简单的比例控制器代替传统的控制器,如比例谐振(PR)或比例积分(PI)控制器,会导致稳态和瞬态误差等缺点。本文研究了基于参照系变换的比例控制器对单相UPS逆变器的多环控制方案。所提出的控制方法在同步参考系中使用两个嵌套比例控制器。实际上,通过参考系变换,UPS逆变器响应斜坡函数的稳态误差变为响应阶跃函数的稳态误差。该方法具有跟踪性能好、不需要任何导数和积分器、动态响应快、设计实现简单等优点。通过MATLAB/SIMULINK仿真验证了所提控制方法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tracking error minimization in multi-loop control of UPS inverters using the reference frame transformation
The main problem in most existing control methods for uninterruptible power supply (UPS) inverters is their excessive complexity. This problem is successfully solved in multi-loop control methods by simple proportional controllers. Nevertheless, using the simple proportional controllers instead of conventional controllers, such as a proportional-resonant (PR) or a proportional-integral (PI) controller, leads to several disadvantages such as the steady state and transient errors. This paper investigates the multi-loop control scheme by proportional controllers using a reference frame transformation for single-phase UPS inverters. The proposed control method uses two nested proportional controllers in the synchronous reference frame. In fact, the steady state error of the UPS inverter in response to the ramp function changes to the steady state error in response to the step function using the reference frame transformation. Excellent tracking performance, no need to any derivative or integrator, fast dynamic response and simplicity of design and implementation are some advantages of the proposed method. The feasibility of the proposed control method is confirmed through simulations in MATLAB/SIMULINK.
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