REDUCING THE SHOOTING OF HYBRID PHOTOVOLTAIC PLANTS ON SCR AND LI-GRIDS

Maya Utami Dewi, Sulartopo Sulartopo, Ahmad Solechan
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Abstract

The main threat by comparable methods lately is the temporary downtime for accurate-current network dispatch errors. Throughout a temporary outage, Power Electronic based power sources stop operating, giving rise to possible security defiance towards the network, in this research, the potentially viable choice to serve continuous work temporarily for the scheme is provided with consideration of identifying upgrades to existing photovoltaic generators (photovoltaic generators discrete) and an upgrade in the separate establishment of existing “photovoltaic” and “Energy Storage Systems” discrete hybrid photovoltaics. This study aims to find a series of power sources with Power Electronic interfaces that are connected to a low “Short Circuit Ratio” network and “Low Inertia” grid to operate without a moment's stoppage. The proposed method was proved by adopting PSS/e on a method where power electronics-occupying assets produce the majority of energy. Inverter models along with temporary shutdown through an equal 3-period fault were advanced in PSS/e. together with increasing infiltration of “Power Electronics” established multitude and resources, progressive completion is needed to improve network stability in low a) areas and low inertia networks. The requirements for progressive solvent arose out of the steady variation in the paradigm of the power grid from the dominant systems of traditional electric machines to the high penetration of systems based on power electronics. A technical comparison was made between distinct categories of resolution (divergent photovoltaic and divergent hybrid photovoltaic) to operate a photovoltaic generator's weak “Short Circuit Ratios” also “Low Inertia” grating (grid). The results of this study indicate that the proposed solution is calculated nether disparate running term and error class adopting the Electromagnetic Transient model. Moreover, to analyze distinct solvents, a specialized proportion is served on discrete hybrid photovoltaic generators. The proposed solution is the development of conventional increase as well as contemporary condensers, deter capacitors, and reducers to advanced photovoltaic generators and hybrid photovoltaic generators to provide voltage support to ensure continuous working through lopsided dispatch streak disturbances, and another solution is photovoltaic-energy generation. Integrated storage system connected to High Voltage dc and high voltage ac transmission network.
减少混合光伏电站对可控硅和锂电网的冲击
最近类似方法的主要威胁是精确电流网络调度错误造成的暂时停机。在临时停电期间,基于电力电子的电源停止运行,可能会对网络产生安全隐患,在本研究中,考虑到现有光伏发电机(光伏发电机分立)的升级和现有“光伏”和“储能系统”分立混合光伏的单独建立的升级,为该方案暂时提供连续工作的潜在可行选择。本研究旨在寻找一系列具有电力电子接口的电源,这些电源连接到低“短路比”网络和“低惯性”电网,使其不停机运行。采用PSS/e对电力电子占用资产产生大部分能量的方法进行了验证。在PSS/e中提出了通过等3周期故障临时关断的逆变器模型。随着“电力电子”已建立的群众和资源的不断渗透,需要逐步完成,以提高低a)地区和低惯性网络的网络稳定性。对渐进式溶剂的需求源于电网模式的稳定变化,从传统的电机主导系统到基于电力电子的系统的高度渗透。对不同分辨率类别(发散式光伏和发散式混合光伏)运行光伏发电机弱“短路比”和“低惯性”光栅(网格)进行了技术比较。研究结果表明,采用电磁瞬变模型计算出的解在不同的运行项和误差类别下都是有效的。此外,为了分析不同的溶剂,在离散混合光伏发电机上提供了一个专门的比例。建议的解决方案是发展传统的增加以及现代的冷凝器,威慑电容器和减速器,以先进的光伏发电机和混合光伏发电机提供电压支持,以确保在不平衡调度条纹干扰下持续工作,另一个解决方案是光伏发电。一体化存储系统连接高压直流和高压交流输电网。
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