Real-time implementation of three-phase single-stage SPV grid-tied system using TL-VSC

被引:7
|
作者
Hussain, Ikhlaq [1 ]
Kandpal, Maulik [1 ]
Singh, Bhim [1 ]
机构
[1] Indian Inst Technol Delhi, Dept Elect Engn, Delhi 110016, India
关键词
power grids; voltage-source convertors; electric current control; voltage control; maximum power point trackers; real-time implementation; three-phase grid-tied system; single-stage grid-tied system; SPV grid-tied system; three-level voltage source converter; TL-VSC; solar photovoltaic grid-tied system; solar intensity levels; SPV array; interfacing inductors; three-phase AC grid; decoupled current controller; capacitor voltage balancing control; incremental conductance maximum power point tracking; IC-MPPT; unity power factor; single-stage topology; IEEE; 519; standard; frequency; 900; Hz; CONNECTED PHOTOVOLTAIC SYSTEMS; CONVERTER; DESIGN; PLANTS;
D O I
10.1049/iet-rpg.2016.0871
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This work deals with real-time implementation of a three-phase single-stage solar photovoltaic (SPV) grid-tied system using a three-level voltage source converter (TL-VSC) working at lower switching frequency of 900Hz under varying solar intensity levels for large power applications. The proposed system consists of SPV array, TL-VSC, interfacing inductors, and three-phase AC grid. The decoupled current controller with the capacitor voltage balancing control and an incremental conductance maximum power point tracking (IC-MPPT)-based algorithms are used to control the TL-VSC to track and transfer maximum active power to AC grid at unity power factor from SPV array. Owing to low switching frequency and single-stage topology, the efficacy of the system is increased. The performance of SPV grid integrated system using TL-VSC is validated under varying solar intensity levels in the laboratory at different switching frequencies and interfacing inductors in accordance to IEEE 519 standard.
引用
收藏
页码:1576 / 1583
页数:8
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