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ILST Control Algorithm of Single-Stage Dual Purpose Grid Connected Solar PV System

机译:单阶段两用并网太阳能光伏系统的ILST控制算法

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摘要

This paper presents a single-stage, three-phase grid connected solar photovoltaic (SPV) system. The proposed system is dual purpose, as it not only feeds extracted solar energy into the grid but it also helps in improving power quality in the distribution system. The presented system serves the purpose of maximum power point tracking (MPPT), feeding SPV energy to the grid, harmonics mitigation of loads connected at point of common coupling (PCC) and balancing the grid currents. The SPV system uses a three-phase voltage source converter (VSC) for performing all these functions. An improved linear sinusoidal tracer (ILST)-based control algorithm is proposed for control of VSC. In the proposed system, a variable dc link voltage is used for MPPT. An instantaneous compensation technique is used incorporating changes in PV power for fast dynamic response. The SPV system is first simulated in MATLAB along with Simulink and sim-power system toolboxes, and simulated results are verified experimentally. The proposed SPV system and its control algorithm are implemented in a three-phase distribution system for power quality improvement and improved utilization of VSC. The total harmonics distortions (THDs) of grid currents and PCC voltages are observed within IEEE-929 and IEEE-519 standards.
机译:本文提出了一种单级,三相并网太阳能光伏(SPV)系统。提议的系统是双重目的的,因为它不仅将提取的太阳能馈入电网,而且还有助于提高配电系统的电能质量。提出的系统用于最大功率点跟踪(MPPT),将SPV能量馈送到电网,减轻公共耦合点(PCC)上连接的负载的谐波并平衡电网电流的目的。 SPV系统使用三相电压源转换器(VSC)来执行所有这些功能。提出了一种改进的基于线性正弦跟踪器(ILST)的控制算法,用于VSC的控制。在提出的系统中,MPPT使用可变的直流链路电压。瞬时补偿技术用于结合PV功率的变化,以实现快速动态响应。首先在MATLAB中将SPV系统与Simulink和sim-power系统工具箱一起进行仿真,并通过实验验证仿真结果。提出的SPV系统及其控制算法在三相配电系统中实现,以改善电能质量并提高VSC的利用率。在IEEE-929和IEEE-519标准中可以观察到电网电流和PCC电压的总谐波失真(THD)。

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