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March 28, 2026Electricity2 citationsOpen Access

A Hybrid Simulated Annealing–Tabu Search Framework for Distribution Network Reconfiguration: Evidence from a Peruvian Case

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JRJuan Pablo Bautista RíosDHDionicio Zócimo Ñaupari HuatucoFPFranklin Jesus Simeon Pucuhuayla

Key Points

  • To develop a hybrid metaheuristic method for the optimization of electric distribution network configuration.
  • Integrated Simulated Annealing and Tabu Search for effective searching.
  • Utilized a selective mesh-based neighbor generation strategy.
  • Implemented in Python with DIgSILENT PowerFactory for real-time analysis.
  • Validated using 5-, 16-, and 33-bus benchmark systems.
  • Achieved a 10.4% reduction in active losses in the real-world application.
  • Improved voltage from 0.931 to 0.949 p.u.
  • Partially relieved feeder overloads.
  • Consistently reached global optimum across 100 simulation runs.

Abstract

This paper introduces a hybrid metaheuristic approach for the reconfiguration of electric distribution networks, integrating Simulated Annealing (SA) and Tabu Search (TS) to accelerate convergence and enhance exploration of the solution space. The method employs a selective mesh-based neighbor generation strategy, which substantially reduces the search space while maintaining operational feasibility (radial topology, voltage, and current limits). The approach was implemented in Python and integrated with DIgSILENT PowerFactory, enabling the direct evaluation of losses, voltages, and currents for reproducible and scalable analysis. Validation on 5-, 16- and 33-bus benchmark systems consistently reached the global optimum across 100 simulation runs, demonstrating robustness and computational efficiency. A real-world application was performed on the 10 kV primary distribution network of Huancayo, Peru, where the proposed method achieved a 10.4% reduction in active losses, improved the minimum voltage from 0.931 to 0.949 p.u., and partially relieved feeder overloads. These results confirm the method’s suitability for both academic benchmarking and practical deployment in Latin American distribution systems.

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Cite This Study

Ríos et al. (2026) studied this question.

synapsesocial.com/papers/69c771838bbfbc51511e1776https://doi.org/10.3390/electricity7020025
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