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MIMO nonlinear modeling and robust control of standalone dc photovoltaic systems

机译:独立直流光伏系统的MIMO非线性建模和鲁棒控制

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摘要

Multiple-input multiple-output (MIMO) modeling and simulation techniques are utilized to boost the usefulness of a common DC-output photovoltaic (PV) system. Vast studies in the literature are mostly based on single-input single-output (SISO) methods. As a result they suffer numerous unpredicted features should they be exposed to particular temperature, irradiation and load changes. These features stem from parameter errors and unmodelled dynamics of actual circuit components. Another issue is that common linearization may fail due to substantial nonlinear behavior. These are caused by switching converters run by means of pulse width modulation (PWM). As a remedy a different method relying on simulated input/output data is put to use to compute a working condition and then obtaining a linear model of the entire system around it. Multiple SISO compensators are replaced with a single MIMO robust controller based on the MIMO model, after which the controlled system is tested in simulations with varying irradiation, temperature and load resistance values. Evaluating the outcomes unveils the fact that newly designed autonomous system can run the PV panel at the maximum power point over a wide envelope of atmospheric and load combinations. Moreover the voltage value fed to a sensitive load is constant and the extra power obtained from the PV panel is used to charge the battery. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:利用多输入多输出(MIMO)建模和仿真技术来提高常见的DC输出光伏(PV)系统的实用性。文献中的大量研究大多基于单输入单输出(SISO)方法。结果,如果将它们暴露于特定的温度,辐射和负荷变化下,它们将遭受许多无法预料的特征。这些特征源于参数误差和实际电路组件的非建模动态。另一个问题是,由于大量的非线性行为,常见的线性化可能会失败。这是由通过脉宽调制(PWM)运行的开关转换器引起的。作为一种补救措施,可以使用依赖于模拟输入/输出数据的不同方法来计算工作条件,然后获得围绕它的整个系统的线性模型。在基于MIMO模型的情况下,多个SISO补偿器被单个MIMO鲁棒控制器取代,此后,该受控系统在具有变化的辐照,温度和负载电阻值的仿真中进行了测试。评估结果揭示了一个事实,即新设计的自治系统可以在大气和负载组合的较大范围内以最大功率点运行PV面板。而且,馈送到敏感负载的电压值是恒定的,并且从PV面板获得的额外功率用于为电池充电。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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