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Localization Technique for Automated Tracking of Construction Materials Utilizing Combined RF and Ultrasound Sensor Interfaces
This paper introduces a prototype framework for automated material tracking (AMTRACK) system. A new ZigBee-based localization technique with hybrid sensor interfaces — combination of radio frequency and ultrasound devices — is presented to improve the accuracy and efficiency of materials tracking. AMTRACK system will provide a potential to increase location accuracy by eliminating multipath property of radio signal propagation. In addition, mesh network capacity of the ZigBee standard will leverage the applicability of the AMTRACK prototype in complex construction projects.
Localization Technique for Automated Tracking of Construction Materials Utilizing Combined RF and Ultrasound Sensor Interfaces
This paper introduces a prototype framework for automated material tracking (AMTRACK) system. A new ZigBee-based localization technique with hybrid sensor interfaces — combination of radio frequency and ultrasound devices — is presented to improve the accuracy and efficiency of materials tracking. AMTRACK system will provide a potential to increase location accuracy by eliminating multipath property of radio signal propagation. In addition, mesh network capacity of the ZigBee standard will leverage the applicability of the AMTRACK prototype in complex construction projects.
Localization Technique for Automated Tracking of Construction Materials Utilizing Combined RF and Ultrasound Sensor Interfaces
Skibniewski, Mirosław J. (Autor:in) / Jang, Won-Suk (Autor:in)
International Workshop on Computing in Civil Engineering 2007 ; 2007 ; Pittsburgh, Pennsylvania, United States
Computing in Civil Engineering (2007) ; 657-664
23.07.2007
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
British Library Conference Proceedings | 2007
|British Library Conference Proceedings | 2007
|An implementation model for automated construction materials tracking and locating
British Library Online Contents | 2010
|An implementation model for automated construction materials tracking and locating
Online Contents | 2010
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