A Static Improvement of Predictive Control for Single Phase Voltage Fed Power Factor Correction Converters

D. Lenine, C. Babu, J. Kumari
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引用次数: 14

Abstract

Harmonic contamination and low power factor in power systems caused by power converters have been a great concern. The effect of harmonics in current due to lagging power factor are the increase in current flow in the capacitors which results in additional heating of the capacitors and reduce its life, increased magnitudes of neutral currents in three phase systems, over-heating in transformers and induction motors. To overcome these problems several converter topologies and control schemes have been proposed in recent years. This work is proposed to identify the power converters with low cost/small size/high efficiency for single phase systems and also to study the control techniques for such converters to improve the Power Factor (PF) and reduce total harmonic distortion (THD) in the input current with output voltage regulation. This work has very high potential for UPS, motor drives and other industrial applications. A predictive control strategy for power factor correction of AC - DC converter is to maintain the unity power factor. Its basic idea is that all of the duty cycles required to achieve unity power factor in a half line period are generated in advance by using a predictive control topologies. It can be based on the average output voltage in the previous half line period, the duty cycles in the current half line period can be calculated by the predictive control topologies. The operation, analysis and design of control technique for high performance rectifier are investigated and verified through simulation.
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单相电压供电功率因数校正变换器预测控制的静态改进
电力系统中由变流器引起的谐波污染和低功率因数一直是人们关注的问题。由于功率因数滞后导致的电流谐波的影响是电容器中的电流流量增加,导致电容器的额外加热并降低其寿命,三相系统中中性电流的大小增加,变压器和感应电动机的过热。为了克服这些问题,近年来提出了几种转换器拓扑和控制方案。本研究旨在找出低成本/小尺寸/高效率的单相系统电源变换器,并研究其控制技术,以改善输入电流的功率因数(PF)和降低输出电压的总谐波失真(THD)。这项工作在UPS、电机驱动和其他工业应用中具有很高的潜力。一种用于交直流变换器功率因数校正的预测控制策略是保持单位功率因数。其基本思想是通过使用预测控制拓扑提前生成在半线路周期内实现统一功率因数所需的所有占空比。它可以基于前半线周期的平均输出电压,通过预测控制拓扑计算当前半线周期的占空比。对高性能整流器控制技术的运行、分析和设计进行了研究,并通过仿真进行了验证。
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