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A New Dual-Mode MPPT Algorithm Applied to a Quadratic Converter in a Solar Energy System

机译:一种新的双模MPPT算法,应用于太阳能系统中的二次转换器

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The work on this paper aims to improve the efficiency of a photovoltaic energy system. Reducing the losses in the adaptation stage allows to improve this efficiency. For that, in this paper we will work on the adaptation stage between the solar panels and the loads to reduce the losses. As a first step, we will present a comparison between a conventional DC-DC boost converter usually used in solar system and a quadratic boost with a single switch. This comparison aims to show the advantage of using quadratic converters with high gain in solar systems. The results show that the quadratic converter has a higher efficiency compared to the conventional one, it allows also to reach higher values of gain for a practically acceptable values of duty cycle. This comparison justifies the choice of the quadratic converter. Then, a new dual-mode variable step-size maximum power point tracking (MPPT) algorithm is proposed. The proposed algorithm is used to control the quadratic converter. The proposed algorithm is based on the perturb and observe (P&O) algorithm. The P&O is one of the most known and used MPPT methods, its drawbacks appear during fast solar irradiance variation. The proposed control method is a double mode algorithm. The first mode is active when the operating point is near of the MPP. This mode allows to stabilize the operating point to reduce the steady-state oscillations that occur using the P&O. The second mode is activated when the operating point moves away from the MPP. This mode is a P&O with a large step size that allows tracking the MPP quickly which also reduces the losses. The proposed algorithm is tested through simulations using Simulink/MATLAB. Simulations results prove the efficiency of the proposed algorithm and its advantage compared to the P&O.
机译:本文的工作旨在提高光伏能源系统的效率。在适应阶段减少损失可以提高效率。为此,在本文中,我们将在太阳能电池板和负载之间的适应阶段进行工作,以减少损耗。第一步,我们将比较通常用于太阳能系统的常规DC-DC升压转换器和具有单个开关的二次升压。该比较旨在显示在太阳能系统中使用具有高增益的二次转换器的优势。结果表明,与传统转换器相比,二次转换器具有更高的效率,对于占空比的实际可接受值,它还可以达到更高的增益值。这种比较证明了选择二次转换器的合理性。然后,提出了一种新的双模变步长最大功率点跟踪算法。该算法用于控制二次变换器。所提出的算法基于扰动和观察(P&O)算法。 P&O是最著名和使用的MPPT方法之一,它的缺点出现在太阳辐照度快速变化的过程中。所提出的控制方法是双模式算法。当工作点在MPP附近时,第一模式处于活动状态。此模式可以稳定工作点,以减少使用P&O发生的稳态振荡。当操作点离开MPP时,将激活第二种模式。此模式是具有较大步长的P&O,可以快速跟踪MPP,这也减少了损耗。通过使用Simulink / MATLAB进行仿真,对提出的算法进行了测试。仿真结果证明了所提算法的有效性及其与P&O相比的优势。

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