Enhancing Reliability in Heavy Duty Autonomous Mobile Machines Through Fault Tolerant Edge Computing
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Description
This paper presents a novel fault-tolerant edge computing architecture for heavy-duty autonomous mobile machines in industrial environments. The proposed system integrates two virtual machine hosts with a circular topology of four Ether- net switches, ensuring network resilience and operational continuity. A key feature is the implementation of automatic takeover protocols, enabling seamless transi- tion between hosts during hardware failures. The network infrastructure leverages Rapid Spanning Tree Protocol (RSTP) and additional loop protection mechanisms to maintain stability and achieve rapid fault recovery. Virtual machines running Ubuntu Linux or FreeBSD are strategically deployed to handle specific tasks with critical services replicated for enhanced reliability. The system incorporates advanced data management through a PostgreSQL database with master-slave replication. Compre- hensive fault tolerance mechanisms, including redundant connections and graceful degradation capabilities, ensure robust performance in challenging industrial set- tings. This architecture significantly enhances the reliability and autonomy of heavy- duty mobile machines, addressing the critical need for uninterrupted operation in industrial automation applications.
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Enhancing Reliability in Heavy Duty Autonomous Mobile Machines Through Fault Tolerant Edge Computing.pdf
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