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A novel maximum power point tracker based on analog and digital control loops

机译:基于模拟和数字控制回路的新型最大功率点跟踪器

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摘要

In this paper, a new maximum power point tracking (MPPT) system for photovoltaic applications is presented. The proposed system consists of two analog loops, a current and a voltage loop, built around a boost converter and a digital loop for the computation of the maximum power point. The analog loops provide a fast response to sudden changes of irradiance conditions while the digital loop, enhancing the accuracy, allows the implementation of various MPPT algorithms and facilitates the integration of additional control and monitoring features. Different existing systems are simulated and compared. A small signal model for the proposed system is developed and a novel compensation method is found. The compensation is designed in such a way that it makes the system independent of the input panel used and also of the load connected at the output. In order to have fast simulation results, a macromodel is developed allowing comparison between different algorithms. Furthermore the "perturb and observe" (P&O) algorithm is improved to obtain a better response for changing irradiance conditions.
机译:在本文中,提出了一种新的用于光伏应用的最大功率点跟踪(MPPT)系统。拟议的系统包括两个模拟环路,一个电流环路和一个电压环路,围绕一个升压转换器和一个数字环路构建,用于计算最大功率点。模拟回路提供对辐照条件突然变化的快速响应,而数字回路则提高了准确性,允许实施各种MPPT算法,并有助于集成其他控制和监视功能。模拟并比较了不同的现有系统。针对所提出的系统,开发了一种小信号模型,并找到了一种新颖的补偿方法。补偿的设计方式使系统独立于所使用的输入面板以及输出端连接的负载。为了获得快速的仿真结果,开发了一个宏模型,允许在不同算法之间进行比较。此外,改进了“扰动并观察”(P&O)算法,以针对变化的辐照条件获得更好的响应。

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