综述了光伏系统的承载容量方法和逆变器控制技术

I. Hamdan, Ahmed Alfouly, M. Ismeil
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引用次数: 0

摘要

由于政治和社会倡议以及科学、经济和环境的进步,可再生能源在世界各地迅速发展。另一方面,分布式发电(DG)系统过度渗透到电网中可能会导致几个问题和操作限制违规,包括电压过高和过低、线路损耗过大、变压器和馈线过载、保护系统故障以及超过国际标准的高谐波失真水平。当系统超出其托管容量(HC)限制时,会出现许多问题。在没有系统升级的情况下,HC是一个连接到电网的最大太阳能系统。提出了一种量化低压配电网太阳能光伏发电容量的方法。三种根本不同的方法被考虑:i)确定性ii)随机iii)时间序列。此外,这些方法在输入数据、输出数据、准确性、可用于获得期望输出的时间、考虑与时间相关的影响和使用的模型等方面都有所不同。此外,还分析了目前这种方法的优缺点,并选择最佳的方法来寻找主机容量。本文的第二个目标是介绍为提高低压配电网主机容量而控制的逆变器类型,如无功功率控制(Volt-Var)控制,有功功率控制(Volt-Watt)控制,有功和无功功率(Volt-Watt & volvar)组合控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A literature review on hosting capacity methodologies and inverter control technologies for photovoltaic system
As a result of political and social initiatives and scientific, economic, and environmental advancements, renewable energy is growing quickly throughout the world. On the other hand, excessive penetration of Distributed Generation (DG) systems into electrical networks may lead to several issues and operational limit violations, including over and under voltages, excessive line losses, overloading of transformers and feeders, failure of the protection system, and high harmonic distortion levels that exceed international standards. Many issues arise when the system goes above its Hosting Capacity (HC) limit. Without a system upgrade, the HC is a maximum solar system that is connected to the grid. This paper presents the methods for quantifying the solar PV hosting capacity of low-voltage distribution grids. Three fundamentally different methods are considered: i) deterministic ii) stochastic iii) time series. In addition, these methods are different in input data, output data, accuracy, time that can be used to obtain the desired output, and consideration of the time-related influence and the models used. Moreover, the present advantages and disadvantages of this method, and select the best method to find hosting capacity. The second objective of this paper present types of inverters controlled for the improvement of hosting capacity in low-voltage distribution grids, the inverters control such as reactive power control (Volt-Var) control, an active power control (Volt-Watt) control, combine active and reactive power (Volt-Watt & VoltVar).
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