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Control and analysis of anti-islanding protection techniques for grid-connected photovoltaic systems

机译:并网光伏系统防孤岛保护技术的控制与分析

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摘要

This thesis presents a comparative study of anti-islanding detection techniques for Photovoltaic (PV) systems which also includes energy policy review and the related standards. The studied anti-islanding detection includes passive, active and a proposed hybrid technique. The proposed hybrid anti-islanding detection technique combines both active and passive detection techniques, namely Voltage Frequency Protection (VFP) and Active Frequency Drift (AFD). The passive technique is used as a primary protection, whereas the active technique is activated when an islanding situation is suspected by the passive technique. The studied anti-islanding techniques are simulated using MATLAB/Simulink simulation package. The results of simulation show that the proposed hybrid anti-islanding detection technique is able to achieve higher detection efficiency as compared to the single detection technique. The proposed technique is able to detect without having the problem as occurred to the VFP while it gains at least 50% improvement of total harmonics distortion (THD) than the AFD. In addition to that, other improvements such as, a narrower non-detected zone (NDZ), faster response time and better power quality are achieved compared to single detection technique. Besides that, the standard compliance of grid-connected PV system is reviewed as it is significant for the PV grid interconnection and distribution generation. The PV grid interconnection standards specify the criteria in utility interface and islanding prevention, in order to fulfil the requirement of MS IEC 61727:2010 and MS IEC 62116:2010 in Malaysia. Lastly, the Malaysian government's efforts in reconstructing the energy policies to promote PV are also reviewed. This study reveals that proper execution and support from local community to international level, financial aids or subsidies, technical support after installation, and PV policies and promotion plans are essential in making the PV systems development a success.
机译:本文对光伏系统的抗孤岛检测技术进行了比较研究,其中还包括能源政策审查和相关标准。研究的防孤岛检测包括被动,主动和提议的混合技术。提出的混合抗孤岛检测技术结合了主动和被动检测技术,即电压频率保护(VFP)和主动频率漂移(AFD)。被动技术用作主要保护,而主动技术在怀疑孤岛情况时激活主动技术。使用MATLAB / Simulink仿真包对所研究的防孤岛技术进行了仿真。仿真结果表明,与单检测技术相比,本文提出的混合抗孤岛检测技术能够实现更高的检测效率。所提出的技术能够检测到VFP,而不会出现VFP出现的问题,而与AFD相比,它可以使总谐波失真(THD)至少提高50%。除此之外,与单一检测技术相比,还实现了其他改进,例如更窄的非检测区(NDZ),更快的响应时间和更好的电源质量。除此之外,还审查了并网光伏系统的标准合规性,因为这对光伏并网和配电发电具有重要意义。为了满足马来西亚的MS IEC 61727:2010和MS IEC 62116:2010的要求,PV网格互连标准规定了公用程序接口和防止孤岛的标准。最后,还回顾了马来西亚政府在重建能源政策以促进光伏发电方面的努力。这项研究表明,从本地社区到国际水平的适当执行和支持,财政援助或补贴,安装后的技术支持以及光伏政策和推广计划对于使光伏系统成功发展至关重要。

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    Teoh Wei Yee;

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  • 年度 2014
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