Coherency group identification is an integral constituent part of the wider field of reduction techniques in power systems. It consists of separating the machines in the system into groups that feature similar behavior. This paper presents a coherency identification algorithm for dynamic studies. The algorithm combines both modal and time domain techniques in an effort to combine the merits of both approaches. Its outcome is a suggested optimal number of clusters alongside the clustering itself. Tests have been conducted on a sample power system of 39 buses and its validity has been demonstrated
Abstract – Principal Component Analysis (PCA) has been recently introduced in the power system dynam...
Identifying generator coherency with respect to slow oscillatory modes has numerous power system use...
This paper presents a novel approach to the coherency identification technique in interconnected pow...
This paper presents an approach for online generator coherency identification based on windowed dyna...
Identification of coherent generators (CGs) is necessary for the area-based monitoring and protectio...
Identification of coherent generators and the determination of the stability system condition in lar...
In the study of large interconnected power systems, it is essential to aggregate, the power system i...
In a bulk power system, generators can be divided into groups based on the variation of their swing ...
Slow coherency is one of the most relevant concepts used in power systems dynamics to group generato...
Abstract Controlled islanding is considered to be the last countermeasure to prevent a system-wide b...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for...
This study investigates the application of support vector clustering (SVC) for the direct identifica...
This paper illustrates the application of a new technique, based on Support Vector Clustering (SVC) ...
This project applies coherency methods for dynamic analysis of power sys-tems. It has been observed ...
In an electric power system, slow coherency can be applied to identify groups of the generating unit...
Abstract – Principal Component Analysis (PCA) has been recently introduced in the power system dynam...
Identifying generator coherency with respect to slow oscillatory modes has numerous power system use...
This paper presents a novel approach to the coherency identification technique in interconnected pow...
This paper presents an approach for online generator coherency identification based on windowed dyna...
Identification of coherent generators (CGs) is necessary for the area-based monitoring and protectio...
Identification of coherent generators and the determination of the stability system condition in lar...
In the study of large interconnected power systems, it is essential to aggregate, the power system i...
In a bulk power system, generators can be divided into groups based on the variation of their swing ...
Slow coherency is one of the most relevant concepts used in power systems dynamics to group generato...
Abstract Controlled islanding is considered to be the last countermeasure to prevent a system-wide b...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for...
This study investigates the application of support vector clustering (SVC) for the direct identifica...
This paper illustrates the application of a new technique, based on Support Vector Clustering (SVC) ...
This project applies coherency methods for dynamic analysis of power sys-tems. It has been observed ...
In an electric power system, slow coherency can be applied to identify groups of the generating unit...
Abstract – Principal Component Analysis (PCA) has been recently introduced in the power system dynam...
Identifying generator coherency with respect to slow oscillatory modes has numerous power system use...
This paper presents a novel approach to the coherency identification technique in interconnected pow...