分布式光伏系统简单移动电压平均法增量电导MPPT性能分析

Amjad Ali, Wuhua Li, Xiangning He
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引用次数: 4

摘要

摘要:为了高效地获取光伏能量,已有几种方法,但大多数方法都未能解决在快速变化的太阳辐照度条件下提取最大功率的问题。在传统的增量电导中,较大的步长减少了跟踪时间,但在最大功率点(MPP)附近仍然存在振荡。然而,较小的步长减小了振荡,但导致跟踪速度变慢。为了降低分布式光伏系统在太阳辐照度不匹配条件下的光伏发电电压波动和功率损失,提出了一种简单移动电压平均(SMVA)技术,并结合定步长直接控制增量电导(INC)最大功率点跟踪(MPPT)方法。理论分析和仿真结果表明,该方法能够在不匹配辐照条件下实现快速准确的跟踪。此外,与传统的固定步长直接控制增量电导MPPT方法相比,由于MPP周围的|dP/dV|非常小,因此显著提高了电压稳定性。结果表明,该方法不仅在电压稳定性方面,而且在系统整体效率方面都适用于间歇性天气条件下的分布式光伏系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of Incremental Conductance MPPT with Simple Moving Voltage Average Method for Distributed PV System
Abstract: In order to harvest photovoltaic energy efficiently, several methods exist, yet most of them failed to address the issues related to extract the maximum power under rapidly changing solar irradiance conditions. In conventional incremental conductance, large step size reduces tracking time but oscillation remains around maximum power point (MPP). However, small step size reduces the oscillation but results in slower tracking speed. This paper proposes a simple moving voltage average (SMVA) technique in conjunction with fixed step direct control incremental conductance (INC) maximum power point tracking (MPPT) method in order to reduce the photovoltaic (PV) generated voltage (VPV) fluctuation and power losses under mismatching solar irradiance conditions in distributed PV system. Theoretical analysis and the simulation results revealed that the proposed SMVA technique provides fast and accurate tracking under mismatching irradiance conditions. Also, it significantly improves the voltage stability because of extremely small |dP/dV| around MPP as compared to the conventional fixed step direct control incremental conductance MPPT method. Finally, results show that the proposed method is suitable for distributed PV system under intermittent weather conditions not only in terms of voltage stability but also in overall system efficiency.
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