Photovoltaic power optimization using sliding mode control with a two-axis tracking system

A. ALQahtani, M. S. Abu-hamdeh, Y. Alsmadi, V. Utkin
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引用次数: 4

Abstract

Optimal power tracking techniques are often employed to more effectively extract the power generated from photovoltaic (PV) modules. This paper examines the problem of adjusting PV module's position to maximize the incident irradiation, and hence, the power. It introduces a two-axis rotation control mechanism to track a PV module's maximum power based on the sun's azimuth and elevation angles. The control mechanism uses the sliding mode control method of self-optimization without depending on the astronomical data for the sun trajectory. The power generated depends heavily on the solar intensity (irradiance); however, total irradiance on any inclined surface is the sum of direct irradiance, isotropic sky diffuse irradiance, and ground reflection. The proposed controller architecture efficiently maintains the power around an optimum value, by orienting a PV module to the corresponding azimuth and elevation optimal angles.
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采用滑模控制的两轴跟踪系统进行光伏发电优化
最优功率跟踪技术通常用于更有效地提取光伏(PV)模块产生的功率。本文研究的问题是调整光伏组件的位置,以最大限度地提高入射辐射,从而提高功率。它引入了一个双轴旋转控制机构,根据太阳的方位角和仰角跟踪光伏组件的最大功率。控制机构采用自优化的滑模控制方法,不依赖于太阳轨迹的天文数据。产生的能量很大程度上取决于太阳强度(辐照度);然而,任何倾斜表面上的总辐照度是直接辐照度、各向同性天空漫射辐照度和地面反射的总和。所提出的控制器架构通过将光伏模块定向到相应的方位角和仰角最佳角度,有效地将功率保持在最佳值附近。
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