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2013 | OriginalPaper | Buchkapitel

6. Quality Assurance in Remanufacturing with Sensor Embedded Products

verfasst von : Onder Ondemir, Surendra M. Gupta

Erschienen in: Quality Management in Reverse Logistics

Verlag: Springer London

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Abstract

Emerging information technologies, such as sensors and radio frequency identification (RFID) tags could be used to mitigate planning of remanufacturing operations by reducing or almost eliminating uncertainty. Using the information collected by sensors, existence, types, conditions, and remaining lives of components in an end-of-life product (EOLP) can be determined. Remaining useful life can be taken into account as a good measure of quality. Therefore, determination of remaining useful life allows decision makers to construct sophisticated recovery models that guarantee a minimum quality level on recovered products while optimizing various system criteria. In this paper, we present a remanufacturing-to-order (RTO) system for end-of-life sensor embedded products (SEPs). An integer programming (IP) model is proposed to determine how to process each and every end-of-life product on hand to meet the quality-based product and component demands as well as recycled material demand while fulfilling the minimum cost objective. Demands are met by disassembly, remanufacturing, and recycling operations. Outside component procurement option is used to eliminate the component and material backorders. A case example is considered to illustrate the application of the proposed methodology.

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Metadaten
Titel
Quality Assurance in Remanufacturing with Sensor Embedded Products
verfasst von
Onder Ondemir
Surendra M. Gupta
Copyright-Jahr
2013
Verlag
Springer London
DOI
https://doi.org/10.1007/978-1-4471-4537-0_6

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