太阳能光伏阵列并网发电系统的伴随最小均方控制

IF 1.6 Q4 ENERGY & FUELS IET Energy Systems Integration Pub Date : 2021-12-02 DOI:10.1049/esi2.12049
Sunaina Singh, Seema Kewat, Bhim Singh, Bijaya Ketan Panigrahi
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引用次数: 2

摘要

研究了一种基于伴随最小均方(ALMS)控制的双级并网太阳能光伏发电系统控制。该算法具有以下特点:(1)收敛速度快;(2)谐波抑制能力强;(3)易于实现。太阳能光伏发电系统包括DC-DC升压变换器、电压源变换器(VSC)、纹波滤波器、三相电网和局部非线性负载。VSC被控制用于从太阳能阵列向电网和三相非线性负载馈送有功功率。此外,还采用了VSC控制,提高了电网的电流质量。在光伏阵列和直流链路电容之间耦合一个DC-DC升压变换器,该电容利用微扰跟踪SPV阵列的最大SPVA功率;观察算法。在这里,SPVA发电系统的主要目标是消除不平衡和非线性负载引起的电能质量问题,并在太阳能光伏阵列辐照度变化时提供正弦电网电流。并与其它控制算法进行了比较。在实验室研制的样机上,研究了在不同的非线性载荷和不同的环境条件下,该ALMS控制的性能。系统的仿真结果与试验结果进行了验证。在满足IEEE 519标准的情况下,给出了电网集成SPV系统的详细性能和电网电流的谐波谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Adjoint least mean square control for solar photovoltaic array grid-connected energy generating system

This study deals with a new control for a double-stage grid-integrated solar photovoltaic array (SPVA)-based energy generation system, which is based on adjoint least mean square (ALMS) control. This ALMS control algorithm has some new features: (1) it provides a fast rate of convergence, (2) harmonics mitigation ability, and (3) ease of implementation. The solar PV energy generating system includes a DC–DC boost converter, a voltage source converter (VSC), a ripple filter, a three-phase grid, and local non-linear loads. The VSC is controlled for feeding the active power from the solar array to the grid and three-phase non-linear loads. Moreover, VSC control is used to improve the grid current quality. A DC–DC boost converter is coupled between the photovoltaic array and the DC-link capacitor, which tracks the maximum SPVA power from the SPV array by using perturb & observe algorithm. Here, the main goals of SPVA generating system are to eradicate power quality problems caused by unbalanced and non-linear loads and to provide sinusoidal grid currents at solar PV array irradiance variation. Moreover, a comparison of ALMS control is made with other control algorithms. Performance of this ALMS control is studied at varying non-linear loads and under different environmental conditions on a developed prototype in the laboratory. The simulated results of the system are validated with test results. Detailed behaviour of the grid-integrated SPV system and harmonics spectrum of grid currents are given here while meeting the IEEE 519 Standard.

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来源期刊
IET Energy Systems Integration
IET Energy Systems Integration Engineering-Engineering (miscellaneous)
CiteScore
5.90
自引率
8.30%
发文量
29
审稿时长
11 weeks
期刊最新文献
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