基于SPV的BES系统电网同步鲁棒控制技术改善电能质量

Sunaina Singh, Seema, Bhim Singh, B. K. Panigrahi
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引用次数: 0

摘要

针对太阳能光伏(PV)分布式发电系统(DGS)的单机模式(SM)和多功能并网模式(GC),采用了一种双级无缝AOGLMS(平均超定广义LMS)控制技术。该DG系统具有BDDC(双向DC-DC转换器),带有电池,太阳能光伏阵列发电,电压源转换器(VSC)和非线性/线性负载。SPV电池系统能够将太阳能发电的额外电力储存到电网中。此外,它具有在GC模式和SM模式下执行操作的双重功能。在这里,基于P&O (Perturb and Observe)技术的MPPT用于从SPV阵列获取峰值功率。在GC模式下,太阳能电池阵列通过升压转换器与直流链路相连,BDDC用于维持直流链路电压并传输有功功率。此外,在GC模式下,鲁棒控制技术消除了不同负载条件下的谐波,实现了系统的无缝运行。而在同步模式下,负载电压角和电网电压角是通过锁相环(PLL)获得的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust Control Technique of Grid Synchronization of SPV based BES System for Power Quality Improvement
In this paper, a double stage seamless AOGLMS (Averaged Overdetermined Generalized LMS) control technique is used for a solar PV (Photovoltaic) based distributed generated system (DGS), in standalone mode (SM), and the grid-connected (GC) mode with multifunctional capability. This DG system has BDDC (Bidirectional DC-DC converter) with a battery, solar PV array generation, voltage source converter (VSC), and nonlinear/linear loads. The SPV battery system is capable to store the extra power of solar generation into the grid. Moreover, it has dual capability for performing both operations in GC mode and SM mode. Here, the MPPT based on P&O (Perturb and Observe) technique is used to harvest the peak power from the SPV array. In GC mode, the solar array is tied to the DC-link with a boost converter, and BDDC is used for maintaining the DC-link voltage with transferring the active power. Moreover, in GC mode, the robust control technique provides a seamless operation with eradicating the harmonics at different loading conditions. However, in the synchronization mode, the load voltage angle, and the grid voltage angle are obtained through the PLL (Phase Locked Loop).
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