[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Arshad et al., 2017 - Google Patents

Wi-chase: A WiFi based human activity recognition system for sensorless environments

Arshad et al., 2017

Document ID
896214931436910252
Author
Arshad S
Feng C
Liu Y
Hu Y
Yu R
Zhou S
Li H
Publication year
Publication venue
2017 IEEE 18th International Symposium on A World of Wireless, Mobile and Multimedia Networks (WoWMoM)

External Links

Snippet

An extensive set of research efforts have explored Channel State Information for human activity detection. By extracting CSI from a sequence of packets, one can statistically analyze the temporal variations embedded therein and recognize corresponding human activities. In …
Continue reading at ieeexplore.ieee.org (other versions)

Similar Documents

Publication Publication Date Title
Arshad et al. Wi-chase: A WiFi based human activity recognition system for sensorless environments
Zhou et al. Device-free presence detection and localization with SVM and CSI fingerprinting
Zhu et al. R-TTWD: Robust device-free through-the-wall detection of moving human with WiFi
Di Domenico et al. A trained-once crowd counting method using differential wifi channel state information
Zou et al. Freedetector: Device-free occupancy detection with commodity wifi
Savazzi et al. Device-free radio vision for assisted living: Leveraging wireless channel quality information for human sensing
Sobron et al. Device-free people counting in IoT environments: New insights, results, and open challenges
CN105933080B (en) Fall detection method and system
Yang et al. Wi-Count: Passing people counting with COTS WiFi devices
Feng et al. Mais: Multiple activity identification system using channel state information of wifi signals
Ding et al. A robust passive intrusion detection system with commodity WiFi devices
Wang et al. FallViewer: A fine-grained indoor fall detection system with ubiquitous Wi-Fi devices
CN109635837A (en) A kind of carefree fall detection system of scene based on commercial wireless Wi-Fi
Xu et al. Indoor events monitoring using channel state information time series
Bahadori et al. ReWiS: Reliable Wi-Fi sensing through few-shot multi-antenna multi-receiver CSI learning
Zhu et al. NotiFi: A ubiquitous WiFi-based abnormal activity detection system
Cao et al. Wi-Wri: Fine-grained writing recognition using Wi-Fi signals
Liu et al. A research on CSI-based human motion detection in complex scenarios
CN110706463A (en) WIFI passive sensing method and system suitable for tumble monitoring
Samadh et al. Indoor localization based on channel state information
WO2013130067A1 (en) Detection of device motion and nearby object motion
Hao et al. CSI‐HC: A WiFi‐Based Indoor Complex Human Motion Recognition Method
Shang et al. A robust sign language recognition system with sparsely labeled instances using Wi-Fi signals
Liu et al. BFP: Behavior-free passive motion detection using PHY information
Huang et al. WiAnti: An anti-interference activity recognition system based on WiFi CSI