Skip to main content
SHARE
Publication

Nodal Admittance Matrix Based Area Partition Method for Small-Signal Stability Analysis of Large-Scale Power Electronics Base...

by Liang Qiao, Yaosuo Xue, Le Kong, Fei Wang
Publication Type
Conference Paper
Book Title
Proceeding of 2021 IEEE Applied Power Electronics Conference and Exposition (APEC)
Publication Date
Page Numbers
687 to 693
Publisher Location
New Jersey, United States of America
Conference Name
2021 IEEE Applied Power Electronics Conference (APEC)
Conference Location
Phoenix, Arizona, United States of America
Conference Sponsor
IEEE Power Electronics Society, IEEE Industry Applications Society, PSMA
Conference Date
-

In power electronics-based power systems (PEPSs), small-signal stability is an important factor for system design and operation, where the impedance-based approach is often used. However, unlike small-scale PEPSs with simple and straightforward impedance models, it would take much more efforts to derive the large-scale PEPSs impedance model, which is very complicated and sometimes may get wrong results due to the elimination of right-half plane (RHP) poles during the impedance aggregation process. To simplify the derivation procedure and analyze the small-signal stability of large-scale PEPSs, this paper proposes a nodal admittance matrix (NAM) based area partition method. In this method, the large-scale PEPS is divided into several sub-areas, and the stability is analyzed within the sub-area first, and then the interconnection stability among these sub-areas is analyzed. The proposed method is scalable and can help to locate the weakest areas/converters that may cause instability in the whole system. In this paper, the concept of the proposed method and its application to an example system are introduced. Experimental results are also given to validate the effectiveness of the proposed method.