底纹
连接(主束)
最大功率点跟踪
算法
对角线的
功率(物理)
计算机科学
光伏系统
串并联电路
最大功率原理
电压
类型(生物学)
模式(计算机接口)
数学
工程类
电气工程
几何学
物理
生态学
计算机图形学(图像)
量子力学
逆变器
生物
操作系统
作者
Çağrı Batuhan OĞUZ,Emre Avcı,Salih Barış Öztürk
标识
DOI:10.1016/j.jestch.2023.101559
摘要
The effeteness of MPPT algorithms is deteriorated by having more Maximum Power Points (MPPs) on the characteristics of the PV array. The number of MPPs can increase with the different connection types of PV panels and the pattern of partial shading, and it also changes the P–V (Power–Voltage) characteristics of the panel. Therefore, it is important to consider different combinations of algorithms, connection types and partial shading patterns for an effective PV plant design. This study assesses the performance of a PV power plant including a 5 × 5 PV array by considering eight different connection types, six partial shading conditions (PSCs), and three well-known MPPT algorithms, all together, on the TMS320F28335 DSP platform. The obtained results and analyses show that the TCT (Total Cross Tied) connection type has higher performance than the other connection types under all PSCs with an average of 25.98% Mismatched Loss (ML), 54.3% Fill Factor (FF) and 13.45% efficiency (η). As for the shading patterns, the Diagonal (DG) pattern has less effect on the system's ML and FF values, and the Long Wide (LW) pattern is less effective in reducing system η. Regarding the algorithms, it has been proven that the performance of a PV system using the simplest form of the basic algorithms can reach the performance of the system using complex algorithms when the connection type is well-adjusted according to the shading patterns. Overall, the given analyses and results prove the significance of taking into account the combination of different MPPT algorithms, types of panel connections, and partial shading patterns to enhance PV system power efficiency and reduce the complexity of PV power plant installations.
科研通智能强力驱动
Strongly Powered by AbleSci AI