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Performance improvement of a photovoltaic system using a controller redesign based on numerical modeling

机译:使用基于数值模型的控制器重新设计来提高光伏系统的性能

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This paper focuses on the utilization of numerical modeling and simulation to improve the performance of a theoretically designed stand-alone photovoltaic (PV) system with constant DC voltage. A theoretically designed system based on standard methods found in the literature is modeled and simulated numerically. This system reveals some unexpected behavior when it is subjected to certain irradiation, temperature and load changes. This behavior is due to the parameters and dynamics of real circuit elements not taken into account by the design. It is also problematic that one cannot use conventional linearization methods to model the system and design the controller because the system contains large nonlinearities caused by elements such as DC/DC switching converters driven by pulse width modulation (PWM). This requires the use of an alternate technique based on the use of simulated input/output data to determine an operating point around which a linear system model is derivable. The controllers for the PV system are redesigned using these models, and the closed-loop system is simulated with variable temperature, irradiation and load levels. Upon evaluating the system performance reveals that the redesigned control system is capable of operating the PV panel at its maximum power point under different atmospheric and load conditions and can provide a constant DC voltage to the critical load while charging the battery with the extra power from the panel. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文着重于利用数值建模和仿真来提高理论设计的具有恒定直流电压的独立光伏(PV)系统的性能。对基于文献中发现的标准方法的理论上设计的系统进行了建模和数值模拟。当受到一定的辐照,温度和负载变化时,该系统显示出某些意外行为。此行为是由于设计未考虑实际电路元件的参数和动力学。还有一个问题是,不能使用常规的线性化方法对系统进行建模和设计控制器,因为系统包含由诸如由脉冲宽度调制(PWM)驱动的DC / DC开关转换器之类的元件引起的大非线性。这需要基于模拟输入/输出数据的使用来确定替代技术,以确定线性系统模型可围绕其导出的工作点。使用这些模型对光伏系统的控制器进行了重新设计,并对闭环系统进行了可变温度,辐射和负载水平的仿真。通过评估系统性能,可以发现经过重新设计的控制系统能够在不同的大气和负载条件下以最大功率运行PV面板,并且可以为临界负载提供恒定的DC电压,同时使用来自电池的额外功率为电池充电。面板。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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