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Design of Robust Feedback Controller for a UPS System in Industrial Application

机译:工业应用中UPS系统鲁棒反馈控制器的设计

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This paper presents a novel Sliding Mode Control (SMC) approach for a three phase AC/DC/AC Voltage source UPS used in Industrial applications. The proposed controller is robust for sudden change in loads and more efficient. Most of the industries run with critical loads, so there is always a need to supply better quality of inverter output voltage waveform. A mathematical model of the system is derived using state space modeling. Using the model, a design procedure of controller implementation using the state variables necessary to obtain a stable system is developed. It can be operated for both linear and non-linear load conditions very effectively. It reduces steady state error and is easy to implement. Load voltage regulation is also found to be within the standards. The dynamic nature of the controller is verified. A phase trajectory is plotted to show the nature of the SMC characteristic in reaching the origin. Frequency response characteristics are plotted to realize the state variables to obtain stability. The simulation work is performed in PSCAD/EMTDC version 4.6. and the system stability condition is analyzed from frequency response plots obtained in MATLAB R2012b platform. The proposed controller can be effectively used in all high power industrial applications.
机译:本文介绍了工业应用中使用的三相AC / DC / AC电压源UPS的新型滑模控制(SMC)方法。建议的控制器对于负载突然变化和更有效的控制器是强大的。大多数行业采用临界负载运行,因此总始终需要提供更好的变频器输出电压波形质量。使用状态空间建模导出系统的数学模型。使用该模型,开发了使用获得稳定系统所需的状态变量的控制器实现的设计过程。它可以非常有效地为线性和非线性负载条件操作。它会降低稳态误差,易于实现。负载电压调节也被发现在标准范围内。验证了控制器的动态性质。绘制相位轨迹以显示在到达原点时的SMC特性的性质。绘制频率响应特性以实现态变量以获得稳定性。仿真工作是在PSCAD / EMTDC版本4.6中执行的。从Matlab R2012B平台中获得的频率响应图分析了系统稳定性条件。所提出的控制器可以在所有高功率工业应用中有效地使用。

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