期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
考虑运输时间和机器预维护的柔性作业车间绿色调度 被引量:5
1
作者 张洪亮 徐公杰 +1 位作者 鲍蔷 余乐安 《计算机集成制造系统》 EI CSCD 北大核心 2024年第9期3111-3124,共14页
针对柔性作业车间调度问题,在同时考虑运输时间、机器预维护和能耗等约束的情况下,建立了最小化完工时间和总能耗的混合整数规划模型,并提出一种多目标离散Jaya算法进行求解。根据问题的特点,设计了基于工序和机器的双层编码方式,并采... 针对柔性作业车间调度问题,在同时考虑运输时间、机器预维护和能耗等约束的情况下,建立了最小化完工时间和总能耗的混合整数规划模型,并提出一种多目标离散Jaya算法进行求解。根据问题的特点,设计了基于工序和机器的双层编码方式,并采用均衡加工时间和能耗的种群初始化方法产生高质量的初始种群。为了将解转化为可行有效的调度方案,设计了带有预维护动态调整策略和考虑运输时间的贪婪插入解码方法。根据解的不同情况,采用不同的方式更新个体。将本文设计的算法与常用的多目标优化算法在18组不同规模的测试算例下进行对比分析,验证了所提算法的有效性。实验结果表明,所提算法能够有效解决考虑运输时间和机器预维护的柔性作业车间绿色调度问题。 展开更多
关键词 柔性作业车间调度 运输时间 预维护 能耗 多目标离散jaya算法
在线阅读 下载PDF
Optimal Allocation of a Hybrid Wind Energy-Fuel Cell System Using Different Optimization Techniques in the Egyptian Distribution Network
2
作者 Adel A. Abou El-Ela Sohir M. Allam Nermine K. Shehata 《Energy and Power Engineering》 2021年第1期17-40,共24页
This paper presents an optimal proposed allocating procedure for hybrid wind energy combined with proton exchange membrane fuel cell (WE/PEMFC) system to improve the operation performance of the electrical distributio... This paper presents an optimal proposed allocating procedure for hybrid wind energy combined with proton exchange membrane fuel cell (WE/PEMFC) system to improve the operation performance of the electrical distribution system (EDS). Egypt has an excellent wind regime with wind speeds of about 10 m/s at many areas. The disadvantage of wind energy is its seasonal variations. So, if wind power is to supply a significant portion of the demand, either backup power or electrical energy storage (EES) system is needed to ensure that loads will be supplied in reliable way. So, the hybrid WE/PEMFC system is designed to completely supply a part of the Egyptian distribution system, in attempt to isolate it from the grid. However, the optimal allocation of the hybrid units is obtained, in order to enhance their benefits in the distribution networks. The critical buses that are necessary to install the hybrid WE/ PEMFC system, are chosen using sensitivity analysis. Then, the binary Crow search algorithm (BCSA), discrete Jaya algorithm (DJA) and binary particle swarm optimization (BPSO) techniques are proposed to determine the optimal operation of power systems using single and multi-objective functions (SOF/MOF). Then, the results of the three optimization techniques are compared with each other. Three sensitivity factors are employed in this paper, which are voltage sensitivity factor (VSF), active losses sensitivity factor (ALSF) and reactive losses sensitivity factor (RLSF). The effects of the sensitivity factors (SFs) on the SOF/MOF are studied. The improvement of voltage profile and minimizing active and reactive power losses of the EDS are considered as objective functions. Backward/forward sweep (BFS) method is used for the load flow calculations. The system load demand is predicted up to year 2022 for Mersi-Matrouh City as a part of Egyptian distribution network, and the design of the hybrid WE/PEMFC system is applied. The PEMFC system is designed considering simplified mathematical expressions. The economics of operation of both WE and PEMFC system are also presented. The results prove the capability of the proposed procedure to find the optimal allocation for the hybrid WE/PEMFC system to improve the system voltage profile and to minimize both active and reactive power losses for the EDS of Mersi-Matrough City. 展开更多
关键词 Wind Energy System Proton Exchange Membrane Fuel Cell Binary Crow Search algorithm discrete jaya algorithm Binary Particle Swarm Optimization Technique
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部