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효과적인 수중로봇 S/W 프레임웍 구현을 위한 데이터 공유구조Data Sharing Architecture for an Effective Implementation of Underwater Robot S/W Framework

Other Titles
Data Sharing Architecture for an Effective Implementation of Underwater Robot S/W Framework
Authors
정순용최현택
Issue Date
14-11월-2011
Publisher
대한전자공학회
Keywords
Underwater Robot; Software Framework
Citation
대한전자공학회 논문지, v.48, no.2, pp 1 - 7
Pages
7
Journal Title
대한전자공학회 논문지
Volume
48
Number
2
Start Page
1
End Page
7
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/7983
Abstract
An underwater robot S/W framework consists of various sub-modules such as sensory data processing module, thruster control module, cognition module and behavior control module. Performance of a robot is determined by not only the efficiency of algorithms used but also effectiveness of their implementations. One most important factor of the effective implementation is the efficiency of data sharing module, as it transmits signals and data between the sub-modules and thus is directly related to the cycles of sensing and control The ideal data sharing module enables immediate access to any data source irrespective of system configurations. In reality, however, there are lots of obstacles including limitation of processing capacity of source modules, delay over network, and scheduling latency of operating systems. The paper proposes a new data sharing architecture and programming models to effectively handle such obstacles in implementation of underwater S/W framework on a small scale distributed computing system.ency of algorithms used but also effectiveness of their implementations. One most important factor of the effective implementation is the efficiency of data sharing module, as it transmits signals and data between the sub-modules and thus is directly related to the cycles of sensing and control The ideal data sharing module enables immediate access to any data source irrespective of system configurations. In reality, however, there are lots of obstacles including limitation of processing capacity of source modules, delay over network, and scheduling latency of operating systems. The paper proposes a new data sharing architecture and programming models to effectively handle such obstacles in implementation of underwater S/W framework on a small scale distributed computing system.
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