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Extended Kalman Filtering to estimate temperature and irradiation for maximum power point tracking of a photovoltaic module

机译:扩展卡尔曼滤波可估算温度和辐照度,以跟踪光伏模块的最大功率点

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This paper develops an algorithm for estimating photovoltaic (PV) module temperature and effective irradiation level. The power output of a PV system depends directly on both of these states. Estimating the temperature and irradiation allows for improved state-based control methods while eliminating the need of additional sensors. Thermal models and irradiation estimators have been developed in the literature, but none incorporate feedback for estimation. This paper outlines an Extended Kalman Filter for temperature and irradiation estimation. These estimates are, in turn, used within a novel state-based controller that tracks the maximum power point of the PV system. Simulation results indicate this state based controller provides up to an 8.5% increase in energy produced per day as compared to an impedance matching controller. A sensitivity analysis is provided to examine the impact state estimate errors have on the ability to find the optimal operating point of the PV system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文开发了一种估算光伏(PV)模块温度和有效辐照水平的算法。光伏系统的功率输出直接取决于这两种状态。估计温度和辐射允许改进基于状态的控制方法,同时消除了对附加传感器的需求。在文献中已经开发了热模型和辐照估计器,但是没有一个模型包含反馈信息。本文概述了用于温度和辐照估计的扩展卡尔曼滤波器。这些估计值依次用于跟踪光伏系统最大功率点的新型基于状态的控制器中。仿真结果表明,与阻抗匹配控制器相比,这种基于状态的控制器每天最多可增加8.5%的发电量。提供敏感性分析以检查影响状态估计误差对找到光伏系统最佳运行点的能力。 (C)2016 Elsevier Ltd.保留所有权利。

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