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June 11, 2026Iconic Research and Engineering Journals0 citations

Designing Fault-Tolerant Event-Driven Systems: A SAGA-Oriented Approach to Consistency in High-Throughput Environments

IKIlker Kanatli

Key Points

  • The study aims to develop a framework that enhances consistency in event-driven architectures while ensuring fault tolerance.
  • Introduced a Convergence-Oriented SAGA model focusing on outcome convergence.
  • Developed a conceptual and architectural framework for designing fault-tolerant, event-driven systems.
  • Evaluated the impact of the approach on resilience and overall system behavior.
  • The Convergence-Oriented SAGA model improved resilience in dynamic operational conditions.
  • Ensured that distributed processes consistently moved toward desired outcomes despite failures.
  • Demonstrated enhanced system behavior in high-throughput environments.

Abstract

Event-driven architectures have become the foundation for building scalable and responsive enterprise systems. By enabling asynchronous communication and decoupling services, these systems can handle high-throughput workloads and dynamic operational conditions. However, maintaining consistency across distributed components remains a critical challenge, particularly in environments where failures, delays, and retries are inevitable. The SAGA pattern has emerged as a widely adopted solution for managing distributed transactions without relying on strict coordination mechanisms. By decomposing complex operations into smaller steps and introducing compensating actions, SAGA provides a practical framework for achieving eventual consistency. However, in real-world systems, compensations are not always sufficient to guarantee coherent outcomes. This paper introduces a novel perspective on distributed consistency through the concept of a Convergence-Oriented SAGA model. Instead of focusing on execution paths, the proposed approach emphasizes outcome convergence. Systems are designed to continuously reconcile their current state with a desired target state, ensuring that distributed processes move toward consistent outcomes despite failures and uncertainties. The study develops a conceptual and architectural framework for designing fault-tolerant, event-driven systems that prioritize convergence over strict execution control. It demonstrates how this approach enhances resilience, improves consistency, and supports reliable system behavior in high-throughput environments.

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Cite This Study

Ilker Kanatli (2026) studied this question.

synapsesocial.com/papers/6a2a515980c8f91e7f39d997https://doi.org/10.64388/irev9i10-1715957
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