TY - JOUR AB - Purpose The purpose of this paper is to propose a new hybrid algorithm, named improved plant growth simulation algorithm and particle swarm optimization hybrid algorithm (PGSA–PSO hybrid algorithm), for solving structural optimization problems.Design/methodology/approach To further enhance the optimization efficiency and precision of this algorithm, the optimization solution process of PGSA–PSO comprises two steps. First, an excellent initial growth point is selected by PSO. Then, the global optimal solution can be obtained quickly by PGSA and its improved strategy called growth space adjustment strategy. A typical mathematical example is provided to verify the capacity of the new hybrid algorithm to effectively improve the global search capability and search efficiency of PGSA. Moreover, PGSA–PSO is applied to the optimization design of a suspended dome structure.Findings Through typical mathematical example, the improved strategy can improve the optimization efficiency of PGSA considerably, and an initial growth point that falls near the global optimal solution can be obtained. Through the optimization of the pre-stress of a suspended dome structure, compared with other methods, the hybrid algorithm is effective and feasible in structural optimization.Originality/value Through the examples of suspended dome structure, it shows that the optimization efficiency and precision of PGSA–PSO are better than those of other algorithms and methods. PGSA–PSO is effective and feasible in structural optimization problems such as pre-stress optimization, size optimization, shape optimization and even topology optimization. VL - 37 IS - 1 SN - 0264-4401 DO - 10.1108/EC-01-2019-0025 UR - https://doi.org/10.1108/EC-01-2019-0025 AU - Jiang Zhengrong AU - Lin Quanpan AU - Shi Kairong AU - Pan Wenzhi PY - 2019 Y1 - 2019/01/01 TI - A novel PGSA–PSO hybrid algorithm for structural optimization T2 - Engineering Computations PB - Emerald Publishing Limited SP - 144 EP - 160 Y2 - 2024/04/24 ER -