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A novel stochastic maximum power point tracking control for off-grid standalone photovoltaic systems with unpredictable load demand

机译:具有不可预测负载需求的外网独立光伏系统的新型随机最大功率点跟踪控制

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This paper shows a novel stochastic maximum power point tracking (MPPT) control for photovoltaic (PV) generators. The PV generator is taken disconnected from the grid, i.e., it considers a direct-current (DC) microgrid supplying varying loads. In this setting, we examine how random, varying loads affect the stability and efficiency of the PV generator. The load changes its value according to a Markov chain, the main assumption of this paper. PV generators are complex nonlinear devices, a challenge from the modeling viewpoint. An alternative becomes converting the nonlinear PV generator model into a Takagi-Sugeno (T-S) fuzzy model. The resulting stochastic T-S fuzzy system has its stability characterized by a condition written in linear matrix inequalities (LMIs). The usefulness of our approach is illustrated by simulating the PV generator model fed with real-time weather data collected in Brazil. The corre-sponding data indicated that the MPPT efficiency was greater than 99.5%, thereby outperforming other methods from the literature. The corresponding data confirm that the DC-DC converter circuit was able to track maximum power from the PV generator against random load variations. Comparisons with other methods indicate the potential of our approach for PV generators. (c) 2021 Elsevier Ltd. All rights reserved.
机译:本文显示了一种用于光伏(PV)发电机的新型随机最大功率点跟踪(MPPT)控制。拍摄PV发生器与电网断开,即,考虑直流(DC)微电网供电不同的负载。在此设置中,我们检查如何随机,不同的负载影响光伏发电机的稳定性和效率。负载根据Markov链的主要假设改变其价值,本文的主要假设。光伏发电机是复杂的非线性设备,来自建模观点的挑战。替代方案变得将非线性PV发生器模型转换为Takagi-Sugeno(T-S)模糊模型。所得到的随机T-S模糊系统具有其稳定性,其特征在于用线性矩阵不等式(LMI)写的条件。通过模拟在巴西收集的实时天气数据,通过模拟馈线的PV发电机模型来说明我们的方法的有用性。 Corre-Sponding数据表明,MPPT效率大于99.5%,从而优于文献的其他方法。相应的数据确认DC-DC转换器电路能够从PV发生器追踪从PV发生器的最大功率免受随机负载变化。与其他方法的比较表明我们对光伏发电机的方法的潜力。 (c)2021 elestvier有限公司保留所有权利。

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