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Analysis of supply chain sustainability with supply chain complexity, inter-relationship study using delphi and interpretive structural modeling for Indian mining and earthmoving machinery industry

机译:供应链复杂性的供应链可持续性分析,利用德尔福和地耕机械工业利用德尔福和解释性结构建模的关系性研究

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The context of the sustainable supply chain (SSC) is progressively getting attention among supply chain (SC) managers due to its competitive advantage in firms' performance. Increasing supply chain complexity (SCC) is argued as one of the biggest risks in achieving the organisational goal with an adverse impact on operational efficiency, cost, profitability, on-time delivery, and customer satisfaction. Though drivers of SSC and SCC have seemingly demonstrated mutual relationship in a practical scenario, supply chain managers tend to address respective drivers independently for managing and controlling. Limited availability of literature investigating interactions among drivers of SSC and SCC with its overall impact on the supply chain motivates deeper research. To address the gap, current research aims to study the mutual relationship between SSC and SCC drivers. To achieve this, a combination of sequential exploratory two-phased research methodology is adopted. The Delphi technique is initially applied to identify the critical SSC and SCC drivers followed by using interpretive structural modeling (ISM) to decipher the mutual relationship among the SSC and SCC drivers. The interactions between SSC and SCC drivers explored in this work will provide supply chain managers a framework for informed decision making. The driving and dependence power of drivers can guide SC practitioners to prioritize and focus on key drivers with a high impact on the overall outcome. The organization can also be benefitted by managing SSC and SCC drivers in synergy against the silo approach. The research finding suggests that market uncertainty, institutional regulations, strategic supplier collaboration, customer pressure, and new technologies are key five drivers in decision-making.
机译:可持续供应链(SSC)的背景(SSC)由于其在公司的竞争优势,供应链(SC)管理者之间的注意力。增加供应链复杂性(SCC)被认为是实现组织目标的最大风险之一,具有不利影响运营效率,成本,盈利,准时交付和客户满意度。虽然SSC和SCC的驱动程序在实际情况下似乎展示了相互关系,但供应链管理人员倾向于独立解决各种司机来管理和控制。文献调查SSC和SCC驱动程序之间的互动的有限可用性,其对供应链的整体影响激励了更深入的研究。为了解决差距,目前的研究旨在研究SSC和SCC驱动因素之间的相互关系。为此,采用了顺序探索双相研究方法的组合。最初应用DELPHI技术以识别关键SSC和SCC驱动器,然后使用解释性结构建模(ISM)来破译SSC和SCC驱动程序之间的相互关系。在本工作中探讨的SSC和SCC驱动程序之间的互动将为供应链管理员提供明智决策的框架。驾驶员的驾驶和依赖权力可以指导SC从业者优先考虑并专注于对整体结果影响的关键驱动因素。该组织也可以通过管理SC和SCC驱动程序在协同作用下对筒仓方法进行益处。研究发现表明,市场不确定性,机构规定,战略供应商合作,客户压力和新技术是决策中的五个司机。

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