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Insan-Robot Etkilȩsimli Ortamlarda Sosyal Robot Gezinmesi: Sosyal Kuvvet Modeli Yakląsimi

  • Istanbul Technical University

Araştırma sonucu: Kitap/Rapor/Konferans Bildirisinde BölümKonferans katkısıbilirkişi

7 Atıf (Scopus)

Özet

The aim of this paper is to discover strategies focusing on maintaining humans' physical safety and mental comfort in human-robot interactive social environments. Our work builds on the ideas for attaining human-like collision avoidance behavior for mobile robots that share the same social environment with people. More explicitly, this paper intends to find out a social motion planning algorithm that enables the robot to have from 'regular collision avoidance' to 'human-like collision avoidance'. To achieve this goal, we use a variant of a pedestrian model called Collision Prediction based Social Force model that is particularly developed for low or average density environments and also benefits from human motion during navigation. Once the model parameters have been calibrated, the model is then adopted to be used as a local planner to generate a socially aware path planning in a hallway scenario. The system is tested in simulation environment, and results are reported.

Tercüme edilen katkı başlığıSocial robot navigation in human-robot interactive environments: Social force model approach
Orijinal dilTürkçe
Ana bilgisayar yayını başlığı26th IEEE Signal Processing and Communications Applications Conference, SIU 2018
YayınlayanInstitute of Electrical and Electronics Engineers Inc.
Sayfalar1-4
Sayfa sayısı4
ISBN (Elektronik)9781538615010
DOI'lar
Yayın durumuYayınlandı - 5 Tem 2018
Etkinlik26th IEEE Signal Processing and Communications Applications Conference, SIU 2018 - Izmir, Türkiye
Süre: 2 May 20185 May 2018

Yayın serisi

Adı26th IEEE Signal Processing and Communications Applications Conference, SIU 2018

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???event.eventtypes.event.conference???26th IEEE Signal Processing and Communications Applications Conference, SIU 2018
Ülke/BölgeTürkiye
ŞehirIzmir
Periyot2/05/185/05/18

Bibliyografik not

Publisher Copyright:
© 2018 IEEE.

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Keywords

  • Human-robot interaction
  • Mobile service robots
  • Social robotics
  • Socially-aware robot navigation

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