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Cost-Benefit Model for Smart Items in the Supply Chain

机译:供应链中智能物品的成本效益模型

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The Internet of Things aims to connect networked information systems and real-world business processes. Technologies, such as barcodes, radio transponders (RFID) and wireless sensor networks, which are directly attached to physical items and assets transform objects into Smart Items. These Smart Items deliver the data to realize the accurate real-time representation of 'things' within the information systems. In particular for supply chain applications this allows monitoring and control throughout the entire process involving suppliers, customers and shippers. However, the problem remains what Smart Item technology should be favored in a concrete application in order to implement the Internet of Things most suitable. This paper analyzes different types of Smart Item technology within a typical logistics scenario. We develop a quantification cost model for Smart Items in order to evaluate the different views of the supplier, customer and shipper. Finally, we conclude a criterion, which supports decision makers to estimate the benefit of the Smart Items. Our approach is justified using performance numbers from a supply chain case with perishable goods. Further, we investigate the model through a selection of model parameters, e.g. the technology price, fix costs and utility, and illustrate them in a second use case. We also provide guidelines how to estimate parameters for use in our cost formula to ensure practical applicability of the model. The overall results reveal that the model is highly adaptable to various use cases and practical.
机译:物联网旨在连接网络信息系统和现实世界的业务流程。直接连接到物理物品和资产的技术(例如条形码,无线电应答器(RFID)和无线传感器网络)将对象转换为智能物品。这些智能物品传递数据以实现信息系统内“事物”的准确实时表示。特别是对于供应链应用,这允许在涉及供应商,客户和托运人的整个过程中进行监视和控制。然而,问题仍然在于,在具体应用中应优先采用哪种智能物品技术,以实现最合适的物联网。本文分析了典型物流场景中的不同类型的智能物品技术。我们为智能物品开发了一个量化成本模型,以评估供应商,客户和托运人的不同观点。最后,我们得出一个标准,该标准可支持决策者估算智能项目的收益。我们的方法是使用带有易腐货物的供应链案例中的绩效数字来证明其合理性。此外,我们通过选择模型参数来调查模型,例如技术价格,固定成本和实用性,并在第二个用例中进行说明。我们还提供了有关如何估算成本公式中使用的参数的准则,以确保模型的实际适用性。总体结果表明,该模型非常适合各种用例并具有实用性。

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