Seismic and Structural Analysis of Tall BuildingsTopology Optimization in EngineeringAdvanced Multi-Objective Optimization Algorithms

Vafa Jabbari, Hadi Azizian, Reza Sojoudizadeh, L. Rahimi

2026.2.25PROCEEDINGS OF THE INSTITUTION OF CIVIL ENGINEERS-STRUCTURES AND BUILDINGS

DOI: 10.1680/jstbu.25.00137

Abstract

The electric eel foraging optimisation EEFO algorithm and an improved variant (I-EEFO) were evaluated for optimising outrigger brace placement in full-scale steel frame structures. The I-EEFO algorithm integrates a Levy flight to replace traditional Brownian randomisation, improving exploration efficiency. Two design examples (10-storey and 20-storey steel frames) demonstrate the algorithms’ ability to enhance structural stability in high-rise buildings. Compared with established metaheuristic methods such as the grey wolf optimiser and the whale optimisation algorithm, the I-EEFO algorithm exhibited superior convergence speed, accuracy and robustness through rigorous evaluations. These findings establish the I-EEFO algorithm as a powerful tool for structural optimisation, offering significant potential for designing efficient and resilient tall buildings.

Citation format

JABBARI, Vafa, et al. Optimal outrigger placement in tall steel frames using improved EEFO algorithm. PROCEEDINGS OF THE INSTITUTION OF CIVIL ENGINEERS-STRUCTURES AND BUILDINGS, 2026, 179(2): 197–211.