A study of the working efficiency of a remote control type hydraulic excavator

Takeshi Hashimoto, Kenichi Fujino, Shinichi Yuta

研究成果

1 被引用数 (Scopus)

抄録

Restoration work following a sediment disaster or volcano disaster may be required in extremely dangerous places. Construction operations in such dangerous places can be executed safely if it can be done using construction equipment that can be operated remotely while observing camera images. Construction using such remote control type construction machinery is called "unmanned construction", and it has been carried out at more than 150 sites in disaster prone Japan. It is said that unmanned construction is generally low efficiency construction so a variety of innovations have been introduced on these construction sites. But until now little has been done to quantitatively verify its construction efficiency and the effectiveness of proposed improvements to the method. This study used test model work proposed by past research to verify the construction efficiency of a remote control type hydraulic excavator. And it offers a proposal to improve efficiency and verified its effectiveness in the same way. The wide remote operator viewing system, with the operator using the cab seat operating device, gave the best remote operating efficiency, although this still took 1.6 times longer to complete the test task than for an operator on the machine.

本文言語English
ホスト出版物のタイトル19th International and 14th European-African Regional Conference of the ISTVS
編集者Peter Kiss, Laszlo Mathe
出版社International Society for Terrain Vehicle Systems
ISBN(電子版)9781942112495
出版ステータスPublished - 2017
イベント19th International and 14th European-African Regional Conference of the International Society for Terrain-Vehicle, ISTVS 2017 - Budapest, Hungary
継続期間: 2017 9月 252017 9月 27

出版物シリーズ

名前19th International and 14th European-African Regional Conference of the ISTVS

Other

Other19th International and 14th European-African Regional Conference of the International Society for Terrain-Vehicle, ISTVS 2017
国/地域Hungary
CityBudapest
Period17/9/2517/9/27

ASJC Scopus subject areas

  • 自動車工学

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