供应链中冲突单元链式结构中设计过程的难以测量的集成测量方法

Q2 Engineering Archives of Transport Pub Date : 2022-12-31 DOI:10.5604/01.3001.0016.1047
A. Ratkiewicz, Jakub Walczak
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引用次数: 1

摘要

本文提出了一种在测量链式结构集成水平的基础上,将冲突单元集成到链式结构中的方法。作者之前的经验表明,当细胞通过物质、信息和金钱流连接时,尽管强度不同,但冲突总是会发生。通常,上述冲突的强度取决于供应链内的合作文化。这是一个高度多维的问题,本文中提到的文献反映了这一问题,并与该主题相关。所提出的方法将冲突细胞之间的技术过程视为这些细胞潜在整合的一个领域。然后,集成就变成了一个问题,即选择合适的变体来实现在一个公司潜在冲突单元共同的领域中进行的技术流程。相同的方法可以用于属于在共同供应链内运营的独立生产和分销公司的电池。本文提出了一种通过确定积分损失指数来测量相邻单元的积分水平的方法,这是一种难以测量的特征。此外,本文还提出了一种基于模糊集理论的多准则方法,用于选择工艺流程的优选变体。给出的示例在供应链中使用此方法来最大限度地提高“发货”和“收货”单元格/链接之间的集成级别。假设流程的首选实现变体将基于以下标准:1)运输成本;2) 运输质量;3) 装运时间。此外,还展示了应用所提出的方法的算法,这有助于有兴趣提高供应链集成水平的管理者。该方法允许在新设计的供应链中以及在改造或重组时提高现有供应链中冲突单元的完整性。此外,本文还指出了与该方法的有效实现相关的一些问题。
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Difficult-to-measure integration measurement method for designing processes in a chain-like structure of conflicted cells in a supply chain
The paper presents an approach for integrating conflicted cells in a chain-like structure based on a measurement of the level of integration of this structure. The authors’ prior experience suggests an assumption that conflicts always arise when cells are connected by a flow of materials, information, and money, although at different intensity levels. Usually, the intensity levels of said conflicts depend on the cooperation culture within a supply chain. This is a highly multidi-mensional problem, reflected by the literature referred to in this paper and related to this subject matter. The proposed approach treats technological processes between conflicted cells as an area of potential integration of these cells. Then, the integration becomes a problem of selecting the appropriate variant of realizing a technological process conducted in an area common for potentially conflicted cells of a company. The same approach may be used for cells belonging to separate production and distribution companies operating within a mutual supply chain. The paper proposes a method for measuring the integration level of neighboring cells, as a difficult-to-measure feature, by deter-mining an integration loss index. Also, the paper presents a multi-criteria method based on the fuzzy set theory for selecting a preferred variant of a technological process. A presented example uses this method in a supply chain to maximize the integration level between Shipping and Recipient cells/links. It has been assumed that the preferred realization variant of the flow process will be based on the following criteria: 1) shipping cost; 2) shipping quality; 3) shipping time. Also, an algorithm is shown for applying the presented methodology, which is helpful for managers interested in increasing the integration level of a supply chain. The methodology allows for increasing the integrity of conflicted cells both in newly designed supply chains as well as in existing ones when remodeled or reorganized. Moreover, the paper indicates some problems associated with the efficient implementation of the proposed method.
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来源期刊
Archives of Transport
Archives of Transport Engineering-Automotive Engineering
CiteScore
2.50
自引率
0.00%
发文量
26
审稿时长
24 weeks
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