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Storage placement in continuum computing for a robotic application

Authors :
Bakhshi, Zeinab
Najafabadi, Zahra
Rodriguez-Navas, Guillermo
Hansson, Hans
Prodan, Radu
Bakhshi, Zeinab
Najafabadi, Zahra
Rodriguez-Navas, Guillermo
Hansson, Hans
Prodan, Radu

Abstract

This paper analyzes the timing performance of a persistent storage designed for distributed containerbased architectures in industrial control applications. The storage ensures data availability andconsistency while accommodating faults. The analysis considers four aspects: 1. placement strategy,2. design options, 3. data size, and 4. evaluation under faulty conditions. Experimental results considering the timing constraints in industrial applications indicate that the storage solution can meet criticaldeadlines, particularly under specific failure patterns. Moreover, this evaluation method is applicablefor assessing other container-based critical applications with timing constraints that require persistentstorage. Further comparison results reveal that, while the method may underperform current centralized solutions under fault-free conditions, it outperforms the centralized solutions in failure scenarios

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1416068317
Document Type :
Electronic Resource