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Ryosuke Kojima

9 accepted papers

2026

Supervised Graph Contrastive Learning for Gene Regulatory Networks

ICML 2026poster

Graph Contrastive Learning (GCL) is a powerful self-supervised learning framework that performs data augmentation through graph perturbations, with growing applications in the analysis of biological networks such as Gene Regulatory Networks (GRNs). The artificial perturbations commonly used in GCL, …

Cited by 0SourceScholar
2018

HARK-Bird-Box: A Portable Real-time Bird Song Scene Analysis System

IROS 2018poster

This paper addresses real-time bird song scene analysis. Observation of animal behavior such as communication of wild birds would be aided by a portable device implementing a real-time system that can localize sound sources, measure their timing, classify their sources, and visualize these factors o…

Cited by 14SourceScholar
2017

Development of microphone-array-embedded UAV for search and rescue task

IROS 2017poster

This paper addresses online outdoor sound source localization using a microphone array embedded in an unmanned aerial vehicle (UAV). In addition to sound source localization, sound source enhancement and robust communication method are also described. This system is one instance of deployment of our…

Cited by 57SourceScholar
2016

Partially Shared Deep Neural Network in sound source separation and identification using a UAV-embedded microphone array

IROS 2016poster

This paper addresses sound source separation and identification for noise-contaminated acoustic signals recorded with a microphone array embedded in an Unmanned Aerial Vehicle (UAV), aiming at people's voice detection quickly and widely in a disaster situation. The key approach to achieve this is De…

Cited by 49SourceScholar
2016

Semi-automatic bird song analysis by spatial-cue-based integration of sound source detection, localization, separation, and identification

IROS 2016poster

This paper addresses bird song analysis based on semi-automatic annotation. Research in animal behavior, especially with birds, would be aided by automated (or semiautomated) systems that can localize sounds, measure their timing, and identify their source. This is difficult to achieve in real envir…

Cited by 26SourceScholar
2015

Audio-visual scene understanding utilizing text information for a cooking support robot

IROS 2015poster

This paper addresses multimodal “scene understanding” for a robot using audio-visual and text information. Scene understanding is defined by extracting six-W information such as What, When, Where, Who, Why, and hoW on the surrounding environment. Although scene understanding for a robot has been stu…

Cited by 15SourceScholar