Recieved:

09/06/2026

Accepted:

16/07/2026

Page: 

doi:

http://dx.doi.org/10.17515/resm2026-1734st0609rs

Views:

6

Improved SA algorithm for masonry layout optimization of building infill walls

Yuanzhe Chen1,2, Feifei Chen3

1School of Science and Engineering, The Open University of China, Beijing, 100039, China
2Shandan County Comprehensive Urban and Rural Development Center, Zhangye, 734000, China
3Institute of Smart City and Intelligent Transportation (Institute of Urban Rail Transportation), Southwest Jiaotong University, Chengdu, 611756, China

Abstract

This paper proposes a hybrid optimization algorithm that fuses multiple methods to address the weak global exploration ability, frequent local optima, and poor engineering adaptability in masonry layout optimization of building infill walls. The method builds a multilayer cooperative framework. It first uses the Genetic Algorithm to create a diverse population. It then applies Simulated Annealing to perform probabilistic jumping optimization. After that, it introduces sparse A search to verify topological feasibility. It finally relies on a cooperative mechanism of Adaptive Whale Optimization and iterative local search to explore the solution space in depth. Experiments on the simultaneous localization and mapping–building information modeling coupled dataset and the building information modeling component multimodal dataset show that the algorithm reaches a standard block utilization rate of 98.76 percent. It also keeps the cutting loss rate as low as 2.79%and achieves a peak stagger-joint compliance rate of 97.11%. In irregular wall scenarios, it reduces cost by up to 33.87%. The results show that this algorithm improves the optimization quality and engineering applicability of masonry layout and provides reliable technical support for precise construction and efficient material use of building infill walls.

Keywords

Building infill wall masonry; Layout optimization; GA; SA; Hybrid optimization

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