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Investigation of Frequency drift methods of Islanding Detection with multiple PV inverters

机译:多台光伏逆变器孤岛检测的频率漂移方法研究

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Islanding Detection is considered one necessary functionality for grid-connected photovoltaic (PV) inverters according to standards and grid-code limits. Diverse islanding detection methods, passive and active, have been proposed in literature to cope with this safety requirement. Among them, active methods are used to reduce and eliminate the nondetection zone (NDZ) when power is almost balanced between source, grid and load. However, it is believed that if two or more PV inverters are connected to the same point of common coupling (PCC), their performance may degrade and can fail in detecting islanding. Few works focus on this field. In this paper, the commonly used active methods of active frequency drift (AFD), Sandia Frequency Shift (SFS) and slip-mode frequency shift (SMS) are comprehensively investigated for multiple inverters system. One phase criterion is theoretically derived to analyze the principle and nature of mutual interference among the aforementioned methods. Simulation is subsequently designed and carried out in the Matlab/Simulink environment to validate this phase criterion. Results of simulation suggest that, for these frequency drift methods, the perturbation type - unidirectional or bidirectional - is the key characteristic resulting in mutual interference in multiple inverters system.
机译:根据标准和电网代码限制,孤岛检测被认为是并网光伏(PV)逆变器的一项必要功能。文献中已经提出了被动和主动的多种孤岛检测方法来应对这种安全要求。其中,当电源在电网,电网和负载之间达到几乎平衡时,使用主动方法来减少和消除非检测区(NDZ)。但是,可以认为,如果将两个或多个PV逆变器连接到公共耦合(PCC)的同一点,它们的性能可能会下降,并且可能无法检测到孤岛。很少有作品专注于这一领域。本文针对多种逆变器系统,全面研究了常用的有源频率漂移(AFD),桑迪亚频移(SFS)和滑模频移(SMS)有源方法。理论上推导了一个相位准则,以分析上述方法之间相互干扰的原理和性质。随后设计仿真并在Matlab / Simulink环境中进行以验证该相位标准。仿真结果表明,对于这些频率漂移方法,扰动类型(单向或双向)是导致多个逆变器系统相互干扰的关键特性。

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