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March 29, 2026Processes2 citationsOpen Access

Service-Oriented Architecture for Decision Support in Industrial Life-Cycle Management: Design, Implementation, and Evaluation

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RNRui Neves-Silva

Key Points

  • The research aims to design and evaluate a service-oriented architecture for enhancing decision support in industrial life-cycle management.
  • Developed a three-layer service model encompassing collaborative, application, and life-cycle management services.
  • Implemented a risk assessment module to monitor life-cycle parameters and trigger maintenance or diagnostics.
  • Validated in two industrial settings: automotive assembly and air conditioning manufacturing.
  • Operational improvements observed included reduced problem resolution time.
  • Lower diagnostic travel requirements were reported.
  • Spare-parts consumption was significantly decreased.
  • Increased structured problem registration was achieved.

Abstract

Manufacturing enterprises face increasing complexity in managing the complete life cycle of production systems, requiring integration of information from diverse sources to support timely maintenance, diagnostics, and operational decisions. This paper presents a comprehensive service-oriented architecture (SOA) for decision support in industrial life-cycle management, integrating real-time monitoring, predictive maintenance, and collaborative problem-solving across extended manufacturing enterprises. The architecture implements a three-layer service model comprising eight core collaborative services, three application services, and six life-cycle management services, orchestrated through a risk assessment module that monitors life-cycle parameters and triggers appropriate maintenance, diagnostics, or hazard prevention actions. The system was developed in the context of a European research project and validated in two industrial settings: automotive assembly lines at a German SME and air conditioning manufacturing at a Portuguese company. Results demonstrated substantial operational improvements, including reduced problem resolution time, lower diagnostic travel requirements, reduced spare-parts consumption, and increased structured problem registration. The original SOAP-based web-services implementation is further contextualized within the contemporary Industry 4.0 landscape through comparison with microservices architectures and discussion of integration paths involving OPC UA, Asset Administration Shells, and digital twins. The paper contributes a validated reference architecture for service-based industrial life-cycle management and clarifies its relevance as an early precursor of contemporary smart manufacturing approaches.

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Rui Neves-Silva (2026) studied this question.

synapsesocial.com/papers/69c8c3a8de0f0f753b39ea8chttps://doi.org/10.3390/pr14071088
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