insulation coordination
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Energies ◽  
2021 ◽  
Vol 14 (11) ◽  
pp. 3047
Author(s):  
Marek Florkowski ◽  
Jakub Furgał ◽  
Maciej Kuniewski

This paper reports on the propagation of lightning overvoltage in a high-voltage direct current (HVDC) meshed grid. Since several topologies of meshed grids have been elaborated in the last decade, we used a common comprehensive reference test platform. The lightning impulse propagation was investigated with regard to the impact of surge arresters and the polarity of the lightning stroke concerning the DC line polarity (±500 kV). Various scenarios were considered, including a direct lightning strike to the DC+ conductor, to the tower, and to the shielding wire in the middle of the span, including backflash on the insulators. The influence of tower footing impedance on overvoltage levels at various nodes was assessed, depicting the critical value. A description of the models used in the simulations was provided. The main focus of the paper was on the wide-area propagation of the overvoltages in the meshed grid, at distant terminals and inside the feeders. An interesting observation was the effects of lightning at the far end of the analyzed grid, propagating through multiterminal and long-distance connections. The presented analysis, based on an exemplary meshed HVDC grid, underlines the importance of the insulation coordination studies and system security studies with respect to the localization of overvoltage protection systems.


Author(s):  
Jiazheng Lu ◽  
Jianping Hu ◽  
Zhen Fang ◽  
Xinhan Qiao ◽  
Zhijin Zhang ◽  
...  

Energies ◽  
2021 ◽  
Vol 14 (2) ◽  
pp. 322
Author(s):  
Petar Sarajcev ◽  
Antun Meglic ◽  
Ranko Goic

This paper presents an electromagnetic transient analysis of lightning-initiated overvoltage stresses of the step-up transformers installed inside a nacelle of onshore, multi-megawatt, new-generation wind turbines. The increase in the wind turbine (WT) nominal power output, necessitated introducing the step-up transformer into the nacelle. A transformer installed inside a nacelle is subjected to completely different overvoltage stresses from those present if it were installed at the base of the WT tower. This has serious repercussions on its overvoltage protection (i.e., selection and installation of surge arresters) and insulation coordination. Furthermore, the overvoltage protection of medium-voltage cables (inside the tower) is also problematic when considering their length, proximity to the tower wall, and their screen grounding practices, and needs to be tackled in conjunction with that of the step-up transformer. This paper presents detailed models for the various components of the latest-generation WTs, intended for fast-front transient analysis and assembled within the EMTP software package. We further present the comprehensive results of the lightning-transient numerical simulations, covering both upward and downward (first and subsequent) strikes, their analysis, and recommendations for the optimal selection of medium-voltage surge arresters for the step-up transformers installed inside a nacelle.


2021 ◽  
Vol 31 (31) ◽  
pp. 39-56
Author(s):  
Željko Despotović

Insulation coordination in the field of power electronics has become a very important issue. It certainly deserves the attention of both designers and users of various topologies of power converter modules and devices. Over decades of experience in this area, a lot of experiential and practical data has been collected and documented in several key standards. The paper presents the basic terminology and basic types of insulation used in modern power converters, as well as an overview of relevant standards. Except being important for designers, the insulation coordination of the power converters has become also a very important issue for users.


2021 ◽  
Vol 2 ◽  
pp. 236-249
Author(s):  
Saban Ozdemir ◽  
Necmi Altin ◽  
Adel Nasiri ◽  
Robert Cuzner

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