Ryuji Oma

Orcid: 0000-0002-6398-4209

Affiliations:
  • Hosei University, Tokyo, Japan


According to our database1, Ryuji Oma authored at least 27 papers between 2017 and 2020.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

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Bibliography

2020
Fault-Tolerant Strategies in the Tree-Based Fog Computing Model.
Int. J. Distributed Syst. Technol., 2020

A Software-Oriented Approach to Energy-Efficiently Unicasting Messages in Wireless Ad-Hoc Networks.
Proceedings of the Advances in Internet, 2020

A Dynamic Tree-Based Fog Computing (DTBFC) Model for the Energy-Efficient IoT.
Proceedings of the Advances in Internet, 2020

Subtree-Based Fog Computing in the TWTBFC Model.
Proceedings of the Advances in Internet, 2020

Evaluation of Parallel Data Transmission in the Mobile Fog Computing Model.
Proceedings of the Advances in Internet, 2020

Distributed Approach to Fog Computing with Auction Method.
Proceedings of the Advanced Information Networking and Applications, 2020

2019
A fault-tolerant tree-based fog computing model.
Int. J. Web Grid Serv., 2019

Evaluation of Data and Subprocess Transmission Strategies in the Tree-Based Fog Computing Model.
Proceedings of the Advances in Networked-based Information Systems, 2019

Fault Detection of Process Replicas on Reliable Servers.
Proceedings of the Advances in Networked-based Information Systems, 2019

A Model for Mobile Fog Computing in the IoT.
Proceedings of the Advances in Networked-based Information Systems, 2019

Data and Subprocess Transmission on the Edge Node of TWTBFC Model.
Proceedings of the Advances in Intelligent Networking and Collaborative Systems, 2019

Evaluation of a Two-Way Tree-Based Fog Computing (TWTBFC) Model.
Proceedings of the Innovative Mobile and Internet Services in Ubiquitous Computing, 2019

Implementation of Fog Nodes in the Tree-Based Fog Computing (TBFC) Model of the IoT.
Proceedings of the Advances in Internet, 2019

Subprocess Transmission Strategies for Recovering from Faults in the Tree-Based Fog Computing (TBFC) Model.
Proceedings of the Complex, Intelligent, and Software Intensive Systems, 2019

A Nodes Selection Algorithm for Fault Recovery in the GTBFC Model.
Proceedings of the Advances on Broad-Band Wireless Computing, Communication and Applications, 2019

Algorithm for Detecting Implicitly Faulty Replicas Based on the Power Consumption Model.
Proceedings of the Advances on Broad-Band Wireless Computing, Communication and Applications, 2019

Data Exchange Algorithm at Aggregate Level in the TWTBFC Model.
Proceedings of the Advances on Broad-Band Wireless Computing, Communication and Applications, 2019

Parallel Data Transmission Protocols in the Mobile Fog Computing Model.
Proceedings of the Advances on Broad-Band Wireless Computing, Communication and Applications, 2019

Energy-Efficient Recovery Algorithm in the Fault-Tolerant Tree-Based Fog Computing (FTBFC) Model.
Proceedings of the Advanced Information Networking and Applications, 2019

A Two-Way Flow Model for Fog Computing.
Proceedings of the Web, Artificial Intelligence and Network Applications, 2019

2018
An energy-efficient model for fog computing in the Internet of Things (IoT).
Internet Things, 2018

Evaluation of an Energy-Efficient Tree-Based Model of Fog Computing.
Proceedings of the Advances in Network-Based Information Systems, 2018

A Tree-Based Model of Energy-Efficient Fog Computing Systems in IoT.
Proceedings of the Complex, Intelligent, and Software Intensive Systems, 2018

An Energy-Efficient Model of Fog and Device Nodes in IoT.
Proceedings of the 32nd International Conference on Advanced Information Networking and Applications Workshops, 2018

Fault-Tolerant Fog Computing Models in the IoT.
Proceedings of the Advances on P2P, 2018

2017
Hybrid Replication Schemes of Processes in Energy-Efficient Server Clusters.
Proceedings of the Advances in Network-Based Information Systems, 2017

Hybrid Replication Schemes of Processes for Fault-Tolerance Systems in Energy-Efficient Server Clusters.
Proceedings of the Advances on Broad-Band Wireless Computing, 2017


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