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Modular Multilevel Converters for Large-Scale Grid-Connected Photovoltaic Systems: A Review

机译:用于大规模并网光伏系统的模块化多电平变流器研究进展

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The use of photovoltaic (PV) systems as the energy source of electrical distributed generators (DG) is gaining popularity, due to the progress of power electronics devices and technologies. Large-scale solar PV power plants are becoming the preferable solution to meet the fast growth of electrical energy demand, as they can be installed in less than one year, as compared to around four years in the case of conventional power plants. Modular multilevel inverters (MMIs) are the best solution to connect these large-scale PV plants to the medium-voltage (MV) grid, due to their numerous merits, such as providing better power quality, having higher efficiency, providing better reliability, and their scalability. However, MMIs are still progressing and need some improvement before they can be implemented safely in the industrial, medium, and high voltage networks. The main purpose of this paper is to review the present MMIs topologies when used in PV applications. The review aims to present a comprehensive study of the various recent submodule circuits associated with MMI topologies. Maximum power point tracking (MPPT) control schemes for PV inverters will be explored extensively. Then, the different control strategies of PV MMIs will be presented and compared to give a holistic overview of the submodules balancing techniques, ranges, and capabilities under balanced and unbalanced grid conditions. In addition, the paper will discuss the future of PV MMIs systems in electricity networks.
机译:由于电力电子设备和技术的进步,使用光伏 (PV) 系统作为分布式发电机 (DG) 的能源越来越受欢迎。大型太阳能光伏电站正在成为满足电能需求快速增长的首选解决方案,因为它们可以在不到一年的时间内安装,而传统电厂则需要四年左右。模块化多电平逆变器 (MMI) 是将这些大型光伏电站连接到中压 (MV) 电网的最佳解决方案,因为它们具有许多优点,例如提供更好的电能质量、更高的效率、提供更好的可靠性和可扩展性。然而,MMI仍在发展中,需要一些改进才能在工业、中压和高压网络中安全实施。本文的主要目的是回顾目前MMI在光伏应用中的拓扑结构。本综述旨在对与MMI拓扑相关的各种近期子模块电路进行全面研究。将广泛探索光伏逆变器的最大功率点跟踪(MPPT)控制方案。然后,将介绍和比较光伏MMI的不同控制策略,以全面概述平衡和非平衡电网条件下子组件的平衡技术、范围和能力。此外,本文还将讨论光伏MMI系统在电网中的未来。

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