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Grid Voltage Sensorless Model-Based Predictive Power Control of PWM Rectifiers Based on Sliding Mode Virtual Flux Observer

机译:基于PWM整流器的网格电压无传感器模型基于滑模虚拟通量观测器的PWM整流器预测功率控制

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摘要

In this paper, a grid voltage sensorless model predictive control is proposed based on a sliding mode virtual flux observer (SMVFO). The proposed SMVFO shows good inherent filtering capacity, and thus there is no high-frequency chattering problem. In addition, the proposed SMVFO is designed based on the closed-loop current estimation. Not only is DC-drift issue solved but also dynamic response is enhanced when compared with the prior open-loop virtual flux observer. To verify the effectiveness of the presented SMVFO, it is further integrated into finite control set-model predictive control (FCS-MPC) for pulse width modulator (PWM) rectifiers. The whole control algorithm features simplicity and improved cost-effectiveness due to the absence of modulator and grid voltage sensors. As the SMVFO can predict current at the next sampling instant while estimating virtual flux accurately, the proposed SMVFO assisted FCS-MPC is comparable to its counterpart using measured grid voltage. The simulation and experimental tests were carried out on a two-level voltage source PWM rectifier to validate the effectiveness of the proposed method.
机译:本文提出了一种基于滑模虚拟通量观测器(SMVFO)的网格电压无传感器模型预测控制。所提出的SMVFO显示出良好的固有滤波能力,因此没有高频抖动问题。此外,所提出的SMVFO基于闭环电流估计设计。与先前的开环虚拟通量观测器相比,不仅可以解决直流漂移问题,还可以增强动态响应。为了验证所提出的SMVFO的有效性,还将其进一步集成到用于脉冲宽度调制器(PWM)整流器的有限控制设型预测控制(FCS-MPC)。由于没有调制器和电网电压传感器,整个控制算法具有简单性和提高的成本效益。由于SMVFO可以在准确估计虚拟通量的同时预测下一个采样瞬间的电流,所提出的SMVFO辅助FCS-MPC与其使用测量的网格电压相当。模拟和实验测试在双级电压源PWM整流器上进行,以验证所提出的方法的有效性。

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