Optimize Ranking and Load Shedding in Microgrid Considering Improved Analytic Hierarchy Process Algorithm and Power Stability Index

Author:

Le Trong Nghia1ORCID,Nguyen Hoang Minh Vu2ORCID,Nguyen Thai An3ORCID,Phung Trieu Tan3ORCID,Huynh Thi Thu Hien1ORCID,Nguyen Quang Tien1ORCID

Affiliation:

1. Department of Electrical and Electronics Engineering, HCMC University of Technology and Education, Ho Chi Minh City 71313, Vietnam

2. Ho Chi Minh City University of Architecture, Ho Chi Minh City 72407, Vietnam

3. Department of Electrical and Electronics Engineering, Cao Thang Technical College, Ho Chi Minh City 710100, Vietnam

Abstract

This paper proposes a load shedding model for the island microgrid based on the ranking of loads and the power stability index (PSI). Loads are ranked based on the improved analytic hierarchy process (AHP) algorithm. Real-time measurement systems have the function of collecting data for very important, important, and less-important loads at each bus load. From this data, the improved AHP method is applied to rank the loads. The advantage of this method is that the subjectivity is eliminated and not depending on the expertise of the system operator when implementing the traditional AHP method. Besides, the minimum amount of load shedding power is calculated, taking into account both primary and secondary control methods. The objective is to minimize the impact on power consumers and ensure that the frequency returns to an acceptable range. In addition, when implementing load shedding, voltage quality, and stability are considered. The PSI serves as a crucial parameter for assessing the voltage stability of microgrid buses. This index is combined with load ranking weights to obtain combined weights for the load shedding plan. Consequently, the proposed load shedding plan prioritizes minimizing damage to customers, improving voltage quality and stability, and ensuring frequency is within permissible limits. The 16-bus microgrid system is applied to compare with traditional methods and to prove the efficiency of the suggested technique.

Funder

Ho Chi Minh City University of Technology and Education

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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