电网辅助自动化太阳能光伏供电节能环保水泵系统,提高了电能质量性能

Shadab Murshid, Bhim Singh
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引用次数: 0

摘要

本文提出了一种太阳能光伏(PV)阵列驱动永磁同步电机(PMSM)驱动的水泵系统。由于日照水平的不断变化,太阳能具有间歇性,因此本系统建议引入公用电网,以确保水泵的可靠和不间断运行。该泵在并入电网后以额定流量运行。利用升压变换器进行功率因数校正,促进了单相电网的潮流。在保持直流链路电压的同时,升压变换器在降低总谐波失真和统一功率因数运行方面提高了电能质量性能。采用改进的正交信号发生器(IOSG)从电网电压中提取基波正序分量。采用增量电导算法提取光伏阵列的最大功率。一种基于反电动势的无传感器技术被用于估计速度和位置。利用开发的实验室样机,对系统在启动、稳态和不同日照条件下的不同运行模式进行了实验验证。研究了该系统在异常网格条件下的性能。该系统在满足IEEE- 519标准电能质量指标要求的所有运行工况下均运行良好,同时从电网中获取电能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utility Grid Assisted Automated Solar PV Powered Energy-Efficient Eco-Friendly Water Pumping System With Improved Power Quality Performance
This work proposes the development of a solar photovoltaic (PV) array powered permanent magnet synchronous motor (PMSM) driven water pumping system. Owing to intermittent nature of solar energy due to continuously varying insolation level, the presented system proposes the introduction of utility grid, which ensures a reliable and uninterrupted operation of water pump. The pump operates at a rated flow rate when integrated to the grid. The power flow from single phase utility grid is facilitated using a boost converter for power factor correction. Along with maintaining the DC link voltage, the boost converter improves the power quality performance in terms of reduced total harmonic distortion and unity power factor operation. An improved orthogonal signal generator (IOSG) is used for extraction of fundamental positive sequence component from the grid voltage. An incremental conductance algorithm is used for extracting maximum power from the PV array. A back emf based sensor-less technique is utilized for estimation of speed and position. The performance of proposed system is experimentally validated for different modes of operation during starting, steady state and varying insolation conditions using a developed laboratory prototype. The performance of the proposed system is also investigated under abnormal grid conditions. The proposed system performs satisfactorily under all operating condition confirming the power quality indices stated under IEEE- 519 standard, while drawing power from the grid.
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