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Novel control algorithm for MPPT with Boost converters in photovoltaic systems

机译:光伏系统中具有Boost转换器的MPPT的新型控制算法

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The great advances in efficiency and performance of photovoltaic modules would not be very useful if they do not work close to their maximum power point (MPP). In this paper a novel Sliding Mode Control (SMC) based algorithm is proposed to be implemented in a DC/DC converter in order to make an autonomous photovoltaic system to work at the MPP. Once that the design of the novel algorithm has been detailed (especially the novel part relative to the current reference signal) and its stability has been demonstrated, its performance has been compared with two of the most commonly used algorithms in this scope, i.e., Perturbation & Observation (P&O) and Incremental Conductance (IC) algorithms, in addition to a PI controller because it is one of the preferred controllers in industrial applications. This comparison has been carried out taking into account both simulated and experimental tests. The first focused on their behavior when sudden changes in irradiance and temperature, while the lasts analyzed them when the load resistance was varying arbitrarily in actual facilities (composed of a photovoltaic module Mitsubishi PV-TD185MF5, a Boost converter, a variable load and a real-time data acquisition card dSPACE DSP1104 used as the interface between the control algorithm implemented in Simulink/Matlab and the real photovoltaic module). After completing tests under different conditions, we found that the proposed SMC based algorithm outperforms the PI controller and the P&O and IC algorithms, especially in experiments carried out using actual facilities. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:如果光伏模块不能在其最大功率点(MPP)附近工作,则其效率和性能的巨大进步将不会非常有用。本文提出了一种新颖的基于滑模控制(SMC)的算法在DC / DC转换器中实现,以使自主光伏系统能够在MPP上工作。一旦详细说明了新颖算法的设计(尤其是相对于当前参考信号的新颖部分)并证明了其稳定性,便将其性能与该范围内两种最常用的算法进行比较,即“扰动”除了PI控制器外,它还具有观察与观察(P&O)和增量电导(IC)算法,因为它是工业应用中的首选控制器之一。进行此比较时要同时考虑模拟和实验测试。第一个研究对象关注的是辐照度和温度突然变化时的行为,最后一个研究对象是实际设施中的负载电阻任意变化时的行为(由三菱PV-TD185MF5光伏模块,Boost转换器,可变负载和实际负载组成)。实时数据采集卡dSPACE DSP1104,用作Simulink / Matlab中实现的控制算法与实际光伏模块之间的接口。在不同条件下完成测试后,我们发现所提出的基于SMC的算法优于PI控制器以及P&O和IC算法,尤其是在使用实际设备进行的实验中。 (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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