system protection
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2022 ◽  
Author(s):  
Paul M. Anderson ◽  
Charles Henville ◽  
Rasheek Rifaat ◽  
Brian Johnson ◽  
Sakis Meliopoulos

Energies ◽  
2021 ◽  
Vol 14 (24) ◽  
pp. 8432
Author(s):  
Muhammad Umair Shahid ◽  
Thamer Alquthami ◽  
Abubakar Siddique ◽  
Hafiz Mudassir Munir ◽  
Saqlain Abbas ◽  
...  

An electrical islanding detection method for DC microgrid (MG) is proposed in this paper. Unlikely conventional AC MG system protection has been challenging for the DC MG system. The goal of the proposed scheme is to detect the islanding intelligently within the agent nodes. The proposed islanding detection technique detects the electrical link failure intelligently, and if any electrical link failure occurs, then the proposed technique maintains the MG operation and load sharing. Islanding detection is carried out using an injection signal and utilizes the existing communication network to check network connectivity. After checking the network connectivity, all the nodes maintain the look-up table of the connected network. This research work illustrates that the proposed electrical islanding detection technique is effective in maintaining the DC MG operation in the case of an electrical islanding/link failure scenario. The proposed scheme’s performance is checked through MATLAB/Simulink for the detection of islanding and maintaining the operation.


2021 ◽  
Author(s):  
John Ciufo ◽  
Aaron Cooperberg

Energies ◽  
2021 ◽  
Vol 14 (24) ◽  
pp. 8306
Author(s):  
Can Ding ◽  
Xiaojian Tian ◽  
Taiping Nie ◽  
Zhao Yuan

The true bipolar modular multilevel converter-based multi-terminal direct current (MMC-MTDC) DC transmission line is prone to single-pole grounding fault, which may cause overload and overcurrent of the non-fault DC line with fault poles, resulting in system protection misoperation and system collapse. Therefore, the power transfer control strategy should be adopted to improve system stability. In addition, considering that the commutator stations of true bipolar MMC-MTDC system may have unipolar faults, it is necessary to adopt the control strategy of inter-pole power transfer or inter-station power transfer to improve the transmission capacity of the system under fault conditions. In this paper, a power transfer control strategy is proposed, which is widely applicable to MMC-MTDC system. In the case of line fault, the power transfer takes into account the line power margin and the power margin of converter station. The inter-pole power transfer is better than the inter-station power transfer under the converter station fault condition, and the inter-station power transfer takes into account the priority of the power margin of the converter station. At the same time, based on the Zhangbei four-terminal flexible direct current transmission project, the Zhangbei four-terminal flexible direct current transmission system is built by using PSCAD/EMTDC, and the flexibility and effectiveness of the proposed strategy are verified by simulation.


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