Optimal under voltage load shedding based on voltage stability index

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Abstract

This paper presents a methodology for under voltage load shedding using a metaheuristic optimization technique and a stability criterion. Two strategies are proposed to find the minimal size and location of load to shed for the recovery of normal operation conditions. The first one is based on a classical criterion for the under voltage load shedding, identifying the load to disconnect by considering bus voltage level; the second includes a simplified voltage stability index SVSI, which identifies critical buses in the system. The proposed methodology is implemented in an IEEE 14 bus test system, considering a heavy loading condition with and without contingency to validate its efficiency.

Figures

  • Figure 1. Movement concept of a particle into a swarm.
  • Figure 2. Loading margin into the load shedding scheme.
  • Figure 3. Flow chart of under voltage load shedding schemes.
  • Figure 4. IEEE 14 bus test system. Source: PSTCA, Power Systems Test Case Archive Retrieved (2015).
  • Figure 6. Voltage level at each bus for λmin 0,1.
  • Table 1. Parameters for PSO algorithm
  • Figure 7. Voltage stability index SVSI for each bus for λmin 0,1.
  • Figure 5. Load shed vs. loading margin for heavy loading without contingency.

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CITATION STYLE

APA

López, K., Pérez, S., & Rodríguez, L. (2016). Optimal under voltage load shedding based on voltage stability index. Ingenieria e Investigacion, 36(2), 43–50. https://doi.org/10.15446/ing.investig.v36n2.53773

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