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Enabling servitization by retrofitting legacy equipment for Industry 4.0 applications: benefits and barriers for OEMs

机译:通过改装工业4.0应用的传统设备来实现培训:OEM的福利和障碍

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In the wake of industry 4.0, many industries have started to pivot towards digital, collaborative, and smart manufacturing systems by connecting their machinery as part of the Internet of Things (IoT). IoT has the potential to provide visibility and improve manufacturing systems through data collection, analysis, and subsequent actions based on insights generated from large amounts of manufacturing data. Even though comparatively newer equipment come readily equipped with embedded sensors and industrial connectivity necessary to connect to the IoT environment, there are many manufacturers (equipment users) who rely on long standing "legacy systems" that offer no or very limited connectivity. In this context, solutions mostly result in the development of low-cost retrofit or upgrade kits that allow integrating legacy equipment into Industry 4.0 environment and thus enable digital servitization. Servitization is a transformation journey that involves firms developing the capabilities they need to provide technical and data-driven services that supplement traditional product offerings. However, retrofitting solutions of legacy equipment rarely involve Original Equipment Manufacturers (OEMs) who may otherwise leverage the opportunity to create and capture unique value by retrofitting and then provisioning data-driven value-added services for the manufacturers. Hence, the primary objective of this paper is to identify and analyze the available literature on retrofitting and upgrading of the legacy equipment for Industry 4.0 integration. In doing so, this study also investigates the potential opportunities and challenges of OEMs in supporting the Industry 4.0 transition of legacy equipment in a servitization context.
机译:在行业4.0之后,许多行业已经开始通过将其机械连接为物联网(物联网)的一部分来朝向数字,协作和智能制造系统枢转。 IOT有可能通过基于大量制造数据产生的洞察力来提供可见性和改进制造系统的可见性和改进制造系统。尽管相对较新的设备很容易配备嵌入式传感器和连接到物联网环境所需的工业连接,但有许多依赖于长期“遗留系统”的制造商(设备用户),可提供没有或非常有限的连接。在这种情况下,解决方案主要导致开发低成本改造或升级试剂盒,允许将遗留设备集成到工业4.0环境中,从而实现数字伺服化。伺服化是一个转型之旅,涉及公司开发所需的能力,他们需要提供补充传统产品的技术和数据驱动的服务。然而,传统设备的改造解决方案很少涉及原始设备制造商(OEM),否则可能会利用机会通过改装提供独特的价值,然后为制造商提供数据驱动的增值服务。因此,本文的主要目的是识别和分析可用文献来改造和升级工业4.0集成的传统设备。在此过程中,本研究还调查了OEM在支持行业4.0在伺服化背景下的遗留设备过渡时的潜在机会和挑战。

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