The Capacity Constraint Physarum Solver
Yusheng Huang (1), Dong Chu (2), Yong Deng (1), Kang Hao Cheong (3 and, 4) ((1) Institute of Fundamental, Frontier Science, University of, Electronic Science, Technology of China, Chengdu, 610054, China, (2), Schools of Information, Communication Engineering, University of

TL;DR
This paper introduces the Capacitated Physarum Polycephalum-inspired Algorithm (CPPA), a novel extension of the Physarum Solver that incorporates capacity constraints, enabling it to solve complex network flow problems more effectively.
Contribution
The paper proposes the CPPA framework, extending the Physarum Solver to handle capacity constraints, and demonstrates its effectiveness across multiple network optimization problems.
Findings
Successfully solves maximum flow, MCMF, and CTAP problems.
Demonstrates efficiency improvements over baseline algorithms.
Proves robustness and ease of implementation across scenarios.
Abstract
Physarum polycephalum inspired algorithm (PPA), also known as the Physarum Solver, has attracted great attention. By modelling real-world problems into a graph with network flow and adopting proper equations to calculate the distance between the nodes in the graph, PPA could be used to solve system optimization problems or user equilibrium problems. However, some problems such as the maximum flow (MF) problem, minimum-cost-maximum-flow (MCMF) problem, and link-capacitated traffic assignment problem (CTAP), require the flow flowing through links to follow capacity constraints. Motivated by the lack of related PPA-based research, a novel framework, the capacitated physarum polycephalum inspired algorithm (CPPA), is proposed to allow capacity constraints toward link flow in the PPA. To prove the validity of the CPPA, we developed three applications of the CPPA, i.e., the CPPA for the MF…
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Taxonomy
TopicsSlime Mold and Myxomycetes Research · Topological and Geometric Data Analysis
