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Unity Efficiency and Zero-Oscillations Based MPPT for Photovoltaic Systems

机译:基于统一效率和基于零振动的光伏系统MPPT

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摘要

Abstract Maximum power point tracking (MPPT) is essential for photovoltaic systems to ensure a maximum power extraction from PV panels. However, some issues such as oscillations, power loss and other technical aspects still unsolved. This paper presents and discusses a new MPPT algorithm with zero-oscillations and unity efficiency in transient and steady-states. This algorithm leads to track the maximum power point under extreme operating conditions. The proposed MPPT method is based on the simple adaptive linear neuron. In addition, its implementation is achieved without any additional control loop, which resulted in a simple control. In order to validate the proposal effectiveness, both simulation and experiment tests are carried out under variable irradiance and load. Comparison between the developed MPPT and the conventional perturb and observe algorithm is also performed. Obtained results show that with the proposed method, unity efficiency is reached and oscillations are fully removed in the transient and steady-states. The originality of this work is the design of a simple and efficient MPPT algorithm based on the ADALINE with unity efficiency and zero-oscillations. Moreover, the proposal is verified using a real PV system under irradiance and load changes.
机译:摘要最大功率点跟踪(MPPT)对于光伏系统是必不可少的,以确保PV面板的最大功率提取。但是,诸如振荡,功率损失等技术方面的一些问题仍未解决。本文提出并讨论了一种新的MPPT算法,在瞬态和稳态中具有零振荡和统一效率。该算法导致在极端操作条件下跟踪最大功率点。所提出的MPPT方法基于简单的自适应线性神经元。此外,它的实现是在没有任何额外的控制循环的情况下实现的,这导致了一个简单的控制。为了验证提案效率,仿真和实验测试都在可变辐照度和负载下进行。还执行了开发的MPPT与传统扰动和观察算法之间的比较。获得的结果表明,通过所提出的方法,达到UNITIT效率,在瞬态和稳态中完全删除振荡。这项工作的原创性是基于Adaline的简单高效的MPPT算法设计,具有Unity效率和零振荡。此外,该提案在辐照度和负载变化下使用真正的PV系统进行了验证。

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