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Augmenting rooftop solar energy penetration ratio with secondary distribution network using smart inverter for maximum power transfer capacity for subordinate grid- A review

机译:使用智能变频器将屋顶太阳能穿透比与二级配电网络一起使用智能变频器,以获得下属网格的最大功率传输能力 - 评论

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摘要

A rooftop photovoltaic power station, or rooftop PV system, is a photovoltaic system that has its electricity-generating solar panels mounted on the rooftop of a residential or commercial building or structure. The various components of such a system include photovoltaic modules, mounting systems, cables, solar inverters, and other electrical accessories. Rooftop mounted systems are small compared to ground-mounted photovoltaic power stations with capacities in the MW (megawatt) range. With the significant improvement of Rooftop Solar Photovoltaic Energy System (RSPES) among various Renewable Energy Systems, the major issues, effects, and several operational characteristics of the rooftop solar PVs in the Distribution System (DS) with Low Power Utility Network are actively being studied and investigated by global researchers and operation engineers. The most important objective of various researches about RSPES is to design a Power System with Optimal Maximum Power Transfer Capacity (MPTC). These review papers analyze the performance of Secondary Distribution System integrated to grid with Smart Inverter with or without the presence of Distribution Generation (DG) units. The effects caused by the penetration of Rooftop Solar Photovoltaic (PV) units in the Distribution Equipment (DE) are detailed in this paper with various research techniques. With the consideration of different objective constraints, Optimization techniques are utilized for solving minimization problems of objectives such as Size, Area, Operational Characteristics, Energy Loss, Cost of Installation, Generation Cost, Peak Load, Reverse Power Flow, and maximization problems of objectives such as PV power generation, Energy Saving Capability, Electricity Energy Mix, etc.. The various optimization techniques and frameworks for improving the performance of Power System and their corresponding results are demonstrated in this paper. This paper reviews totally 42 related researches done on the different phases of Optimization based Rooftop Solar PV system in the period between 2015 and 2017. This review summarizes the evaluation of the i) Solar rooftop energy with effects of increase in penetration; ii) The performance of efficient secondary distribution system with grid integrated smart inverter; iii) Algorithms based on optimization for solving the objectives in rooftop solar PV system are investigated.
机译:屋顶光伏电站或屋顶光伏系统是一种光伏系统,其电力产生的太阳能电池板安装在住宅或商业建筑或结构的屋顶上。这种系统的各种部件包括光伏模块,安装系统,电缆,太阳能逆变器和其他电气配件。与具有MW(兆瓦)的容量的接地光伏电站相比,屋顶安装系统很小。随着各种可再生能源系统中的屋顶太阳能光伏能量系统(RSPES)的显着改善,正在积极研究分配系统(DS)中屋顶太阳能PVS的主要问题,效果和若干操作特性并由全球研究人员和运营工程师调查。关于RSPES各种研究的最重要目标是设计具有最佳最大功率传输容量(MPTC)的电力系统。这些审查论文分析了二次分配系统的性能,其与智能逆变器有或没有分配生成(DG)单位的存在。本文详细介绍了分配设备(DE)中的屋顶太阳能光伏(PV)单元渗透造成的效果,具有各种研究技术。考虑到不同的客观限制,优化技术用于解决目标的最小化问题,例如尺寸,面积,操作特性,能量损失,安装成本,发电成本,峰值负荷,反向功率流量以及目标的最大化问题作为光伏发电,节能能力,电能混合等。本文证明了各种优化技术及其用于提高电力系统性能及其相应结果的框架。本文在2015年至2017年期间,全部对基于优化的屋顶太阳能光伏系统的不同阶段进行了42个相关研究。本综述总结了I)太阳屋顶能源的评价,其渗透率增加; ii)高效二级配电系统与网格集成智能逆变器的性能; III)研究了基于用于解决屋顶太阳能光伏系统中的目标的优化的算法。

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