首页> 外文会议>IEEE International Conference on Power Electronics, Drives and Energy Systems >Preemptive Mode-Change Triggering for Inverters in Response to Unintentional Islanding Situations in High Solar PV Penetration Distribution Networks
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Preemptive Mode-Change Triggering for Inverters in Response to Unintentional Islanding Situations in High Solar PV Penetration Distribution Networks

机译:用于响应高太阳能光伏渗透分布网络的无意孤岛地区的逆变器触发逆变器的先发型模式 - 更换触发

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Unintentional islanding is one of the major concerns associated with integration of large solar photovoltaic generation with the power distribution network. However the issue of islanding needs to be comprehensively understood and managed given a challenging scenario ahead. This demands transition towards predictive approaches rather than the prevalent reactive ones for island detection and system management. The present work describes a machine learning based preemptive islanding detection module designed on a Raspberry Pi microcomputer for issuing advance alert to grid-interfaced solar photovoltaic inverters in the event of an imminent islanding situation and triggering the subsequent action. The module can activate a timely change in the inverter's operating mode by detecting precursors to accidental islanding, before the utility relay can trip a circuit breaker. Thus an intentional island can be maintained with acceptable power quality after the mode-changing operation. The module can also issue a shut-down command to the inverter's control in order to completely avoid an unintentional island formation. Preliminary tests on an islanding precursor, discovered in simulation and on real laboratory-based network, have been presented. The precursor is simulated on a modified IEEE feeder and the online classification accuracy and speed indicate promising potential as a field-level prototype.
机译:无意的岛屿是与带有配电网络的大型太阳能光伏发电结合的主要问题之一。然而,考虑到提前具有挑战性的情景,需要全面地理解和管理岛屿问题。这需要转变为预测方法而不是用于岛检测和系统管理的普遍反应性。本工作描述了一种基于机器学习的先发制人岛检测模块,用于在覆盆子PI微型计算机上设计,用于在迫在眉睫的岛地情况下向电网接口的太阳能光伏逆变器发出预先警报并触发随后的动作。在公用事业继电器绊倒断路器之前,该模块可以通过检测到意外岛屿的前体来激活变频器的操作模式的及时改变。因此,在模式改变操作之后,可以在可接受的电能质量上保持故意岛。该模块还可以向变频器的控制发出关闭命令,以便完全避免无意的岛屿形成。已经提出了在模拟和基于实验室的网络中发现的岛状前体的初步测试。在改进的IEEE进纸器上模拟前体,并且在线分类精度和速度表示有希望的潜力作为现场级原型。

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