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Genya Ishigaki

Network Slicing Network Caching Combinatorial Optimization Reinforcement Learning Resource Allocation For Next-Generation Networks
San José State University Department of Computer Science

About

Genya Ishigaki is an Assistant Professor at San Jose State University. He received his Ph.D. and M.S. in Computer Science from The University of Texas at Dallas in 2021, and his B.S. and M.S. in Engineering from Soka University, Japan. His research interests include network slicing, network caching, combinatorial optimization, and reinforcement learning. Currently, his research focuses on resource allocation problems for adaptive and autonomous control of next-generation networks.

Research Performance Summary

40
Total Papers
1464
Total Citations
10
H-Index
2014-2025
Active Research Span

First Recorded Paper

On maximizing tree reliability based on minimum diameter spanning tree

Year: 2014

Citations: 3

Venue: 2014 IEEE Asia Pacific Conference on Circuits and Systems (APCCAS)

Latest Recorded Paper

Trustworthy Artificial Intelligence for Network Automation

Year: 2025

Citations: 0

Venue: Journal of IEICE 108 (3)

Last 10 Years Publication Activity

This timeline shows the professor's yearly publication activity.

2025
5
2024
5
2023
5
2022
3
2021
3
2020
2
2019
2
2018
5
2017
4
2016
4
2015
1

Publication Venues and Collaboration

Journal, Conference, and Book Publication Breakdown

Conference 28
Journal 9
Book 0

Top Coauthors

Ishigaki Jue Gour

Research Impact by Period

2025-2026

Period Stats
Papers 5
Citations 1
Avg. Citations / Paper 0.2
H-Index 1

2020-2024

Period Stats
Papers 18
Citations 147
Avg. Citations / Paper 8.2
H-Index 7

2015-2019

Period Stats
Papers 16
Citations 1313
Avg. Citations / Paper 82.1
H-Index 8

2010-2014

Period Stats
Papers 1
Citations 3
Avg. Citations / Paper 3
H-Index 1

Contact and Professional Links

Contact Information

genya.ishigaki@sjsu.edu
4089245076

Detected Research Keywords

Recovery Interdependent Vnfs Interdependent Vnfs Reinforcement Vnfs Reinforcement Learning Domain Optical Networks Optical Networks Geographically Networks Geographically Correlated Geographically Correlated Failures Interdependent Networks Restructuring Networks Restructuring Dependencies Domain Network Slice