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A memristor-based sensing and repair system for photovoltaic modules

机译:用于光伏模块的基于忆体的传感和修复系统

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摘要

Among renewable energy sources the sun is certainly one of the easiest to exploit. Solar panels allow generating electrical energy but they generally have low efficiency. It is therefore important to optimize a solar module to maximize its energy production. Faults can have for example a big impact on the amount of energy production, and should be avoided if possible. This goal can be achieved by designing fault tolerant photovoltaic modules. In this paper, we propose a sensing and repair system for photovoltaic modules. The system is based on two key elements: sensing of the photovoltaic cell status through memristors and dynamic reconfiguration of the connections among cells. Using a memristor for sensing allows creating simple yet effective measuring systems that is able to detect the state of each cell of the modules. This information can be read externally or can be used internally by the reconfiguration system. The second key element of our system is indeed a new reconfiguration scheme that allows dynamically changing the connections among cells. This system can be used to reconfigure the connections among cells to maximize energy production, depending on the health state of each solar cell. The same system can be used to substitute redundant cells in the array to compensate faults and to improve energy production. We present a detailed characterization and power analysis of the system, highlighting the improvements in energy production and demonstrating its ability to compensate faults. The solution that we propose is modular and can be extended to arrays of any size. It can also be potentially embedded inside a solar panel, leading to a self-healing device that can improve the energy that is generating.
机译:可再生能源来源,太阳肯定是最容易利用之一。太阳能电池板允许产生电能,但它们通常具有低效率。因此,优化太阳能模块以最大化其能量生产是重要的。故障可能具有例如对能量产生量的大量影响,如果可能的话,应避免。通过设计容错光伏模块可以实现这一目标。在本文中,我们提出了一种用于光伏模块的传感和修复系统。该系统基于两个关键元素:通过忆阻器的光伏单元状态感测和电池之间的连接的动态重新配置。使用Memristor进行感测允许创建能够检测模块的每个单元格状态的简单且有效的测量系统。可以在外部读取此信息,或者可以通过重新配置系统内部使用。我们系统的第二个关键元素确实是一种新的重新配置方案,允许动态地改变单元之间的连接。根据每个太阳能电池的健康状态,该系统可用于重新配置细胞之间的连接以最大化能量产生。相同的系统可用于替代阵列中的冗余单元来补偿故障并改善能量产生。我们提供了系统的详细表征和功率分析,突出了能源生产的改善,并证明了其补偿过错的能力。我们提出的解决方案是模块化的,可以扩展到任何尺寸的阵列。它也可以嵌入太阳能电池板内,导致自修复装置,可以改善产生的能量。

著录项

  • 来源
    《Microelectronics reliability》 |2021年第2期|114026.1-114026.9|共9页
  • 作者单位

    Department of Electronics and Telecommunications Politecnico di Torino Corso Duca degli Abruzzi 24 10129 Torino Italy;

    Department of Electronics and Telecommunications Politecnico di Torino Corso Duca degli Abruzzi 24 10129 Torino Italy;

    Department of Electronic Engineering University of Rome “Tor Vergata” Via del Politecnico 1 00133 Roma Italy;

    Department of Electronics and Telecommunications Politecnico di Torino Corso Duca degli Abruzzi 24 10129 Torino Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Memristor; Photovoltaic array; Reconfigurable architecture;

    机译:忆耳;光伏阵列;可重新配置的架构;

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