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Cites:

Information Journal Paper

Title

Optimal Load Shedding to Prevent Voltage Collapse Considering the Priority of Feeders and Buses

Pages

  19-30

Abstract

 Today, power systems are operated close to their stability limits for economic reasons. On the other hand, with the occurrence of outage, the stability of the system has a problem that there are various solutions to compensate. The last and safest way to control and maintain system stability is load shedding. In this paper, Under Voltage Load Shedding is presented considering voltage dependent feeders load and also using the improved discrete particle swarm optimization algorithm (IDPSO). Since the load model is particular importance in the real load analysis, the decisions will be applied by considering voltage dependent load modeling. To ensure proper operation, the proposed method has been implemented using MATLAB software on the IEEE 30-bus test system by considering related constraints. For this purpose, two critical loads for the test system are considered and the results are examined. The results show that the proposed method provides the best location and amount of load shedding and indicates its effectiveness.

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  • Cite

    APA: Copy

    ABDOLLAHI, SOMAYEH, EBRAHIMI, REZA, & AHMADI, AHMAD. (2022). Optimal Load Shedding to Prevent Voltage Collapse Considering the Priority of Feeders and Buses. JOURNAL OF COMMUNICATION ENGINEERING, 11(44 ), 19-30. SID. https://sid.ir/paper/963243/en

    Vancouver: Copy

    ABDOLLAHI SOMAYEH, EBRAHIMI REZA, AHMADI AHMAD. Optimal Load Shedding to Prevent Voltage Collapse Considering the Priority of Feeders and Buses. JOURNAL OF COMMUNICATION ENGINEERING[Internet]. 2022;11(44 ):19-30. Available from: https://sid.ir/paper/963243/en

    IEEE: Copy

    SOMAYEH ABDOLLAHI, REZA EBRAHIMI, and AHMAD AHMADI, “Optimal Load Shedding to Prevent Voltage Collapse Considering the Priority of Feeders and Buses,” JOURNAL OF COMMUNICATION ENGINEERING, vol. 11, no. 44 , pp. 19–30, 2022, [Online]. Available: https://sid.ir/paper/963243/en

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