变步长算法实现了两相软开关交错升压变换器

A. Anupama, P. N. Seema, V. Srikanth
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引用次数: 1

摘要

本文研究了采用两相软开关交错升压变换器实现的最大功率点跟踪(MPPT)控制器,重点研究了用太阳能板代替普通直流电源的有效性。该系统在MPPT的基础上结合了软开关技术,提高了系统的整体效率。用于跟踪光伏电池板最大可能功率的算法是可变步长算法,由于它能够根据MPP改变步长,因此优于其他方法。与其他具有MPPT的转换器相比,上述具有MPPT的转换器效率很高(约96%),因为减少了纹波和减少了开关损耗。因此,它可以应用于高电压以及高功率应用,如航天器,混合动力电动汽车,直流备用能源系统,功率因数校正器等。由于输出电压纹波小,它也可以用于并网和微电网应用。在本工作中,利用MATLAB软件进行了设计和仿真,验证了MPPT转换器的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variable step-size algorithm implemented two phase soft-switched interleaved boost converter
This paper presents the study of maximum power point tracking (MPPT) controller implemented two phase soft-switched interleaved boost converter and focuses on the effectiveness of putting a solar panel instead of an ordinary dc source. The proposed system raises the overall efficiency by incorporating soft-switching technique in addition to MPPT. The algorithm used to track maximum possible power from the PV panel was variable step size algorithm, being superior over other methods due to its ability to change the step size according to the MPP. The above mentioned converter with MPPT is found to be highly efficient (around 96%) compared to other converters with MPPT because of reduced ripple and reduced switching losses. So it can be applied for high voltage as well as high power applications such as in space crafts, hybrid electric vehicles, dc back up energy systems, power factor correctors etc. It can also be used for grid connected and micro-grid applications because of low output voltage ripple. In this work, design and simulation has been done in MATLAB software to verify the performance of the converter with MPPT.
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