基于UPQC的双级太阳能光伏电池SEIG改进GIO-FLL

Chandrakala Devi Sanjenbam, Bhim Singh
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引用次数: 2

摘要

本文采用广义积分器观测器(GIO)锁频环(FLL)控制算法改善三相独立系统的电能质量(PQ),以水轮机驱动的三相自励感应发电机(SEIG)为三相源,沿双级太阳能光伏电池供电,通过统一的电能质量调节器(UPQC)连接在直流链路上。UPQC由两个电压源变换器(VSCs)组成,在公共直流母线上背靠背连接。UPQC的VSC系列用于补偿电压电能质量,并在负载端保持无谐波和恒幅电压,而不管系统中的任何变化。此外,UPQC的并联VSC还提供了无功补偿、谐波消除、单位功率因数校正等电能质量,同时提高了电压电能质量。它显著提高了发电机终端的电能质量,并确保即使在平衡或不平衡负载下也能遵守IEEE-519和IEC-61727标准的要求。此外,通过在低于额定电压的情况下运行SEIG,并将负载之间的电压维持在所需值,可以将励磁电流最小化,从而减少铁芯损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modified GIO-FLL for UPQC Based SEIG with Double Stage Solar PV Battery System
This paper presents improvement of power quality (PQ) in three-phase standalone system using generalized integrator observer (GIO) frequency locked loop (FLL) control algorithm, for three-phase self-excited induction generator (SEIG) driven by hydro turbine as a three-phase source feeding the sensitive/nonlinear/linear loads along a double stage solar PV-battery is integrated at the DC link, connected via a unified power quality conditioner (UPQC). The UPQC consists of two voltage source converters (VSCs) connected back to back at common DC bus. The series VSC of the UPQC is used for compensating voltage power quality and to maintain the harmonic free and constant amplitude voltage at load terminals, irrespective of any variation in the system. Moreover, the power qualities such as reactive power compensation, harmonics elimination, unity power factor corrections are provided by the shunt VSC of the UPQC, simultaneously while voltage power quality is improved. It significantly enhances the power quality at the generator terminals and ensures to adhere the mandate the IEEE-519 and the IEC-61727 standards even with either balanced or unbalanced loads. Moreover, by operating the SEIG below its rated voltage and maintaining the voltage across loads at its desired value, one can minimized the excitation current and hence the core losses.
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