Double Integral Sliding Mode Control for Single-Stage Active FIBC-PFC in Smart Grid Applications

F. Harirchi, H. Sartipizadeh
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引用次数: 3

Abstract

This work addresses a single-stage active power factor correction (PFC) scheme that is implemented using a Floating Interleaved Boost Converter (FIBC) equipped with an indirect Double Integral Sliding Mode Controller (DISMC) adopted for a single phase full bridge rectifier. Due to the high gain, high efficiency and small size components, FIBC-based approach can achieve unit power factor and voltage-regulation within a single-stage configuration in addition to optimize the system configuration. An indirect DISMC scheme is proposed to reduce the steady-state error and chattering while achieving fast transient and reasonable stability. The proposed controller can effectively improve the tracking performance of the line current. Simulations have been done by MATLAB indicate that, the proposed approach drives the output voltage to the desired DC level in the presence of external disturbances and internal parameter uncertainties, while providing close to unity power factor.
智能电网中单级有源fc - pfc的双积分滑模控制
这项工作解决了一种单级有源功率因数校正(PFC)方案,该方案使用浮动交错升压转换器(FIBC)实现,该转换器配备了用于单相全桥整流器的间接双积分滑模控制器(DISMC)。基于fibc的方法由于具有高增益、高效率和小尺寸元件,除了优化系统配置外,还可以在单级配置内实现单位功率因数和电压调节。提出了一种间接DISMC方案,在实现快速暂态和合理稳定的同时,减小稳态误差和抖振。所提出的控制器可以有效地提高线路电流的跟踪性能。MATLAB仿真结果表明,在存在外部干扰和内部参数不确定性的情况下,该方法可以将输出电压驱动到所需的直流电平,同时提供接近单位的功率因数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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