Affiliation:
1. State Grid Wuxi Electric Power Co., Ltd Wuxi China
2. Guodian Nanjing Automation Co., Ltd Nanjing China
Abstract
AbstractWith the high penetration of distributed generation and gradual increase in loop network structures, existing over‐current protection in distribution networks is difficult to apply. The use of current differential protection has become an ideal solution, and high performance and commercialization of 5G communication provides an effective way to solve the problem of differential protection channel transmission. Aiming at distribution network differential protection based on 5G, this paper adopted an adaptive frequency conversion transmission mechanism to significantly reduce the data flow of differential protection. In terms of protection strategy, the differential allowable signal and the differential protection startup logic are separated, and a novel action method and protection logic suitable for weak infeed distribution networks are proposed. The strategy significantly shortens the protection action time under wireless communication. Furthermore, a comprehensive synchronization scheme using zero‐crossing synchronization of forward sampling points and cycle numbers based on the second pulse signal was established. This scheme can effectively improve the reliability of data synchronization for differential protection. Finally, the method proposed in this study was verified using the dynamic model experiment of real‐time digital simulation (RTDS).
Publisher
Institution of Engineering and Technology (IET)
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology,Control and Systems Engineering
Reference17 articles.
1. A new fast comprehensive protection scheme of an active distribution network considering the abnormal operating conditions of 5G communication;Hongshan C.;Power Syst. Protection Control,2021
2. Research and application of self‐synchronized differential protection for distribution networks using 5G as the communication channel;Houlei G.;Power Syst. Protection Control,2021
3. Liu K. Sakis Meliopoulos A.P. Xie B. Zhong C. Xie J.:Dynamic state estimation‐based protection of distribution systems with high penetration of DERs. In:2020 IEEE Power & Energy Society General Meeting (PESGM) pp.1–5(2020)
4. Key issues of fault analysis on distribution system with high‐density distributed generations;Ke P.;Autom. Electr. Power Syst.,2017
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