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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Experimental Design of Fixed Switching Frequency Model Predictive Control for Sensorless Five-Level Packed U-Cell Inverter
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Experimental Design of Fixed Switching Frequency Model Predictive Control for Sensorless Five-Level Packed U-Cell Inverter

机译:无传感器五级组装U型电池固定开关频率模型预测控制的实验设计

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摘要

In this paper, a fixed switching frequency model predictive current controller is designed and implemented on a sensorless five-level packed U-cell (PUC5) inverter interfacing the utility. The predictive control methodology is based on a voltage vector generation technique for the cost function optimization by nullifying its derivative. The aim of the controller is to allow a fixed-frequency operation with no iterations while operating as a utility line current regulator. A pulsewidth modulator based on employing PUC5 redundant switching states fixes the PUC5 auxiliary dc bus capacitor voltage to its desired level with no necessity of a regulator; the overall technique reduces system complexity with less sensors and no loops in the predictive algorithm making it suitable for industrial applications. System discrete model is developed and experimental results verify the performance of the designed controller in making a fast response in regulating the grid current and balancing the capacitor voltage.
机译:在本文中,设计了一个固定开关频率模型预测电流控制器,并在与该实用程序接口的无传感器五级紧凑型U单元(PUC5)逆变器上实现。预测控制方法基于电压矢量生成技术,可通过取消其导数来进行成本函数优化。控制器的目的是在作为公用事业线路电流调节器运行时,允许无迭代的固定频率运行。基于采用PUC5冗余开关状态的脉宽调制器,无需调节器即可将PUC5辅助直流总线电容器电压固定在所需的水平。整体技术减少了传感器的数量,并减少了预测算法中的循环,从而降低了系统复杂性,使其适用于工业应用。开发了系统离散模型,实验结果验证了所设计控制器在调节电网电流和平衡电容器电压方面做出快速响应的性能。

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