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The Performance Estimation of the Situation Awareness RFID System from Ubiquitous Environment Scenario.

, , and . EUC, volume 3824 of Lecture Notes in Computer Science, page 987-995. Springer, (2005)

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Conflict Resolution Model Based on Weight in Situation Aware Collaboration System., , , and . FTDCS, page 99-106. IEEE Computer Society, (2007)3-Layer fault tolerance strategy in 6×6 hybrid electric vehicle which has independent steering and in-wheel drives., , , and . Intelligent Vehicles Symposium, page 843-848. IEEE, (2012)The Performance Estimation of the Situation Awareness RFID System from Ubiquitous Environment Scenario., , and . EUC, volume 3824 of Lecture Notes in Computer Science, page 987-995. Springer, (2005)The Efficient Distribution Method of Limited Wireless Communication Frequency Resources for the Multi-robot Teaming., , and . ICINCO (2), page 530-536. SciTePress, (2019)The Anti-tampering Process and Case Study by the Operating Mode of Various Unmanned Ground Vehicles., , and . AIM, page 1432-1437. IEEE, (2018)A Situation Aware Personalization in Ubiquitous Mobile Computing Environments., , , and . EUC Workshops, volume 4097 of Lecture Notes in Computer Science, page 213-223. Springer, (2006)Situation-Aware Based Self-adaptive Architecture for Mission Critical Systems., , , and . ICESS, volume 4523 of Lecture Notes in Computer Science, page 464-475. Springer, (2007)The reliable design by the wireless network redundancy for remote control mechanism of the heavy unmanned ground vehicle., , and . AIM, page 160-165. IEEE, (2017)The IoT based automate landing system of a drone for the round-the-clock surveillance solution., , , , and . AIM, page 1575-1580. IEEE, (2015)The comparison of the detecting performance between the ground and the aerial visual analytics in the UGV-UAV collaborative system., , and . AIM, page 524-529. IEEE, (2016)