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A Framework for Industrial Identifier Addressing Considering Compatibility and Efficiency.

, , , , and . ICPADS, page 2007-2014. IEEE, (2023)

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iPAC: Integrate Pedestrian Dead Reckoning and Computer Vision for Indoor Localization and Tracking., , , , and . IEEE Access, (2019)Improving the Applicability of Visual Peer-to-Peer Navigation with Crowdsourcing., , , , , , and . ICPADS, page 188-195. IEEE, (2020)Train Once, Locate Anytime for Anyone: Adversarial Learning-based Wireless Localization., , , and . ACM Trans. Sens. Networks, 20 (2): 37:1-37:21 (March 2024)Scaling Up Edge-Assisted Real-Time Collaborative Visual SLAM Applications., , , , , , and . IEEE/ACM Trans. Netw., 32 (2): 1823-1838 (April 2024)RF-Diffusion: Radio Signal Generation via Time-Frequency Diffusion., , , , , , and . MobiCom, page 77-92. ACM, (2024)Taming Event Cameras with Bio-Inspired Architecture and Algorithm: A Case for Drone Obstacle Avoidance., , , , , , and . MobiCom, page 55:1-55:16. ACM, (2023)FlyTracker: Motion Tracking and Obstacle Detection for Drones Using Event Cameras., , , , , , and . INFOCOM, page 1-10. IEEE, (2023)Train Once, Locate Anytime for Anyone: Adversarial Learning based Wireless Localization., , , , , and . INFOCOM, page 1-10. IEEE, (2021)Industrial Knee-jerk: In-Network Simultaneous Planning and Control on a TSN Switch., , , , , and . MobiSys, page 356-369. ACM, (2023)Wi-drone: wi-fi-based 6-DoF tracking for indoor drone flight control., , , , , , and . MobiSys, page 56-68. ACM, (2022)