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Real Time Linear Control implementation Based on Experimentally Validated Small Signal Model of a Three-Phase Three-Level Boost-Type Vienna Rectifier

机译:实时线性控制实现基于实验验证的小信号模型的三相三级升压型维也纳整流器

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In this paper, design and implementation of a new MIMO linear control technique based on theoretically established and experimentally validated small signal model for the three-phase three-level boost-type AC/DC Vienna converter is presented. The resulted transfer functions are discretized for sake of digital controllers design. Multiple-loop control strategy is adopted and consists of inner current feedback loops, based on the straightforward looping technique that neglects interactions between the dq components of respectively control inputs and currents, and of an outer voltage loop, designed to ensure DC voltage regulation by adjusting the magnitude of the references for the inner current loops. The proposed control approach IS first simulated, using SIMULINK of Matlab, and then validated on a 1.5 kW laboratory prototype supported by the DS 1104 digital real-time controller board of dSPACE. The obtained results prove that a judicious choice of controller parameters, as well as an adequate rating of boost inductors allow meeting the IEEE standards requirements in terms of AC line current Total Harmonic Distortion (THD) and Power Factor (PF). The efficiency of the proposed control technique is maintained in case of disturbances occurring on both source and load sides.
机译:在本文中,提出了一种基于理论和实验验证的三相三级Boost-型AC / DC维也纳转换器的理论和实验验证的小信号模型的新MIMO线性控制技术的设计与实现。由于数字控制器设计,所产生的传递函数被离散化。采用多环控制策略并基于忽略分别控制输入和电流的DQ组件与外部电压环之间的相互作用的直接循环技术组成,旨在通过调节确保直流电压调节的DQ组件之间的相互作用内部电流环的引用的大小。首先使用MATLAB的Simulink模拟所提出的控制方法,然后在DS 1104数字实时控制器板的DS 1104数字实时控制器板支持的1.5 kW实验室原型上验证。所获得的结果证明了控制器参数的明智选择,以及升压电感的足够额定值允许在交流线电流总谐波失真(THD)和功率因数(PF)方面满足IEEE标准要求。在两个源和负载侧发生干扰的情况下,维持所提出的控制技术的效率。

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