Network systems are commonly used in various fields, such as power grid, Internet of Things (IoT), and gas networks. Reliability redundancy allocation problem (RRAP) is a well-known reliability design tool, which needs to be developed when the system is extended from the series-parallel structure to a more general network structure. Therefore, this study proposes a novel RRAP called General RRAP (GRRAP) to be applied to network systems. The Binary Addition Tree Algorithm (BAT) is used to solve the network reliability. Since GRRAP is an NP-hard problem, a new algorithm called Binary-addition simplified swarm optimization (BSSO) is also proposed in this study. BSSO combines the accuracy of the BAT with the efficiency of SSO, which can effectively reduce the solution space and speed up the time to find high-quality solutions. The experimental results show that BSSO outperforms three well-known algorithms, Genetic Algorithm (GA), Particle Swarm Optimization (PSO), and Swarm Optimization (SSO), on six network benchmarks.
翻译:可靠性冗余分配问题(RRAP)是一个众所周知的可靠性设计工具,在系统从系列平行结构扩展至更一般的网络结构时需要开发,因此,本研究报告建议对网络系统采用名为 " 通用RRAP(GRAP) " 的新型RRAP(GRAP)系统。二进制树升温(BAT)用于解决网络的可靠性问题。由于二进制树增压是NP-硬性的问题,本研究报告还提出了称为 " 二进制简化暖优化 " (BSSO)的新算法。BSO将BAT的准确性与SO的效率结合起来,这可以有效减少解决方案的空间并加快寻找高质量解决方案的时间。实验结果表明,BSOSO超越了六个网络基准的三种众所周知的算法 -- -- 遗传Algorithm(GA)、Parts Swarm Optim化(PSO)和SWarm Optim化(SO)。