A Modular Approach for Synchronized Wireless Multimodal Multisensor Data Acquisition in Highly Dynamic Social Settings
Chirag Raman, Stephanie Tan, Hayley Hung
Abstract
Existing data acquisition literature for human behavior research provides wired solutions, mainly for controlled laboratory setups. In uncontrolled free-standing conversation settings, where participants are free to walk around, these solutions are unsuitable. While wireless solutions are employed in the broadcasting industry, they can be prohibitively expensive. In this work, we propose a modular and cost-effective wireless approach for synchronized multisensor data acquisition of social human behavior. Our core idea involves a cost-accuracy trade-off by using Network Time Protocol (NTP) as a source reference for all sensors. While commonly used as a reference in ubiquitous computing, NTP is widely considered to be insufficiently accurate as a reference for video applications, where Precision Time Protocol (PTP) or Global Positioning System (GPS) based references are preferred. We argue and show, however, that the latency introduced by using NTP as a source reference is adequate for human behavior research, and the subsequent cost and modularity benefits are a desirable trade-off for applications in this domain. We also describe one instantiation of the approach deployed in a real-world experiment to demonstrate the practicality of our setup in-the-wild.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Related papers
- Understanding Precision Time Protocol in Today's Wi-Fi Networks: A Measurement StudyPaizhuo Chen, Zhice YangUSENIX ATC 2021 · 21 citations
- SyncWISE: Window Induced Shift Estimation for Synchronization of Video and Accelerometry from Wearable SensorsYun C. Zhang, Shibo Zhang, Miao Liu, Elyse R. Daly et al.UbiComp 2020 · 9 citations
- Single Packet, Single Channel, Switched Antenna Array for RF LocalizationYang-Hsi Su, Chouchang (Jack) Yang, Euiseok Hwang, Alanson P. SampleUbiComp 2023 · 8 citations
- Cluster-Based Network Time Synchronization for Resilience with Energy EfficiencyNitin Shivaraman, Patrick Schuster, Saravanan Ramanathan, Arvind Easwaran et al.RTSS 2021 · 7 citations
- BMAR: Barometric and Motion-based Alignment and Refinement for Offline Signal Synchronization across DevicesManuel Meier, Christian HolzUbiComp 2023 · 5 citations
