题名

揀貨區無人搬運車之派車法則最適化研究

并列篇名

Research on the Optimization of Dispatching Rule of AGV in Picking Area

DOI

10.6459/JCM.202003_17(1).0006

作者

陳君涵(J. H. Chen);陳俊佑(J. Y. Chen)

关键词

揀貨系統 ; 無人搬運車 ; 派車法則 ; 自動化物料搬運系統 ; Picking System ; AGVs ; Dispatching Rule ; AMHS

期刊名称

危機管理學刊

卷期/出版年月

17卷1期(2020 / 03 / 01)

页次

55 - 64

内容语文

繁體中文

中文摘要

在小型物流系統中,是否能夠有效的將貨架適時、適當並且迅速得搬運到揀貨區進行揀貨動作,對於揀貨系統的績效有很大的影響,然而在眾多的物料搬運系統,其中又以無人搬運車(Automated Guided Vehicle)最具生產力與彈性,所以選擇適當的派車法則對成本的降低也是一件重要的事。本研究以Arena Simulation 系統模擬軟體為工具,模擬小型揀貨區搬運系統的過程對派車控制問題進行探討,探討系統車數以及派車法則的變化對系統績效的改變。

英文摘要

In the small-scale logistics system, it is important that the shelves can be effectively and timely transported to the picking area properly and quickly for picking. It has a great influence on the performance of the picking system. Moreover, in many automatic material handling systems (AMHS), the Automated Guided Vehicle is the most productive and flexible. Therefore, the selection of dispatching rule is also an important factor in the reduction of costs. This study applies the Arena Simulation system simulation software to simulate the process of a small picking area handling system and then to explore the control of the car. The system performances are influenced by the number of AGVs and the dispatching rules.

主题分类 社會科學 > 管理學
参考文献
  1. anchoco, J. M.Egbelu, P. J.,Taghaboni, F.(1987).Determination of the total number of vehicles in an AGV-based material transport system.Material Folw,4,33-51.
  2. Egbelu, P. J.(1987).Pull Versus Push Strategy for Automated Guided Vehicle Load Movement in a Batch Manufacturing System.Journal of Manufacturing System,6(3),271-280.
  3. Egbelu, P. J.,Tanchoco, J. M. A.(1984).Characterization of automatic guided vehicle dispatching rules.International Journal of Production Research,22(3),359-374.
  4. Koo, P. H.(2005).Estimation of Part Waiting Time and Fleet Sizing in AGV system.The internation Journal of Flexxible Manufacturing Systems,16,211-228.
  5. Maxwell, W. L.,Muckstadt, J. A.(1982).Design of Automatic Guided Vehicle Systems.IIE Transactions,14,114-124.
  6. Rajotia, S.,Shanker, K.,Batra, J. L.(1998).Determination of Optimal AGV Fleet Size for an FMS.International Journal of Production Research,36(5),1177-1198.
  7. 李欣(2013).物流系統建模與仿真.上海:格致.
  8. 周泓(譯)(2007).仿真使用 Arena 軟件.北京:機械工業.
  9. 林立千(2001).設施規劃與物流中心設計.台北:智勝文化.
  10. 林則孟(2009)。國立清華大學工業工程與工程管理研究所。
  11. 郭幸民(2014).仿真使用 Arena 軟件.台中:滄海書局.