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Reliability Framework for Cloud Virtual Nodes using Fault Tolerance Techniques
Author(s) -
Hemlata Pal,
Akshay Kumar
Publication year - 2019
Publication title -
international journal of engineering and advanced technology
Language(s) - English
Resource type - Journals
ISSN - 2249-8958
DOI - 10.35940/ijeat.b2502.109119
Subject(s) - cloud computing , computer science , fault tolerance , distributed computing , latency (audio) , virtual machine , scalability , reliability (semiconductor) , scheme (mathematics) , real time computing , reliability engineering , operating system , engineering , telecommunications , power (physics) , mathematical analysis , physics , mathematics , quantum mechanics
Since cloud computing has numerous benefits and demands, it is much efficient performing real time computing in cloud infrastructure. This real time system takes benefits of scalable virtualized environment and intensive cloud computing capabilities for executing real time tasks. Most of the real time applications undergone its processing stage on remote cloud computing nodes. Here chances of error occurrence is also higher due to undecided latency. And it is necessary that the safety critical applications should have higher reliability. To determine whether the fault tolerance mechanism is having the higher reliability and availability or not. This paper proposes an efficient adaptive fault tolerance mechanism through reliability assessment architecture to enhance the reliability of the system. The decision mechanism is also proposed in this scheme to improve the efficiency a bit higher than normal scheme. At last the fine grained check point algorithm is utilized for reducing the latency. Thus from the analysis of the data it is proved that the execution time of proposed method hikes when compared to other conventional schemes.

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