In wireless body area sensor networking (WBASN) applications such as gastrointestinal (GI) tract monitoring using wireless video capsule endoscopy (WCE), the performance of out-of-body wireless link propagating through different body media (i.e. blood, fat, muscle and bone) is still under investigation. Most of the localization algorithms are vulnerable to the variations of path-loss coefficient resulting in unreliable location estimation. In this paper, we propose a novel robust probabilistic Bayesian-based approach using received-signal-strength (RSS) measurements that accounts for Rayleigh fading, variable path-loss exponent and uncertainty in location information received from the neighboring nodes and anchors. The results of this study...
Accurate localization of the endoscopy capsule can have a significant positive impact on disease dia...
RF localization science and technology started with the global positioning systems for outdoor areas...
[EN] Localization inside the human body using ultrawideband (UWB) wireless technology is gaining imp...
Localization of wireless capsule endoscope (WCE) while it travels through the Gastrointestinal (GI) ...
Wireless capsule endoscopy (WCE) is a non-invasive technology used for visual inspection of the huma...
Wireless capsuleendoscopy (WCE) is used for imaging and diagnosing diseases in thegastrointestinal (...
Wireless capsule endoscopy (WCE) is used for imaging and diagnosing diseases in the gastrointestinal...
We propose scattered path loss based weighted centroid localization (WCL) algorithm for wireless vid...
Wireless capsule endoscopy (WCE) is an emerging technique to enhance Gastroenterologists information...
© 2016 IEEE. This paper presents a theoretical analysis for location estimation of a wireless capsul...
© 2016 IEEE. Location estimation of a wireless capsule endoscope at 400 MHz MICS band is implemented...
Wireless capsule endoscopes take and send photos of the human digestive tract, which are used for me...
A novel methodology for localization of wireless-capsule-endoscope (WCE) by using the direct-positio...
Wireless endoscopic capsules can transmit the picture of the inside of the digestive tract to the ex...
Capsule endoscopy has been heralded as a technological milestone in the diagnosis and therapeutics o...
Accurate localization of the endoscopy capsule can have a significant positive impact on disease dia...
RF localization science and technology started with the global positioning systems for outdoor areas...
[EN] Localization inside the human body using ultrawideband (UWB) wireless technology is gaining imp...
Localization of wireless capsule endoscope (WCE) while it travels through the Gastrointestinal (GI) ...
Wireless capsule endoscopy (WCE) is a non-invasive technology used for visual inspection of the huma...
Wireless capsuleendoscopy (WCE) is used for imaging and diagnosing diseases in thegastrointestinal (...
Wireless capsule endoscopy (WCE) is used for imaging and diagnosing diseases in the gastrointestinal...
We propose scattered path loss based weighted centroid localization (WCL) algorithm for wireless vid...
Wireless capsule endoscopy (WCE) is an emerging technique to enhance Gastroenterologists information...
© 2016 IEEE. This paper presents a theoretical analysis for location estimation of a wireless capsul...
© 2016 IEEE. Location estimation of a wireless capsule endoscope at 400 MHz MICS band is implemented...
Wireless capsule endoscopes take and send photos of the human digestive tract, which are used for me...
A novel methodology for localization of wireless-capsule-endoscope (WCE) by using the direct-positio...
Wireless endoscopic capsules can transmit the picture of the inside of the digestive tract to the ex...
Capsule endoscopy has been heralded as a technological milestone in the diagnosis and therapeutics o...
Accurate localization of the endoscopy capsule can have a significant positive impact on disease dia...
RF localization science and technology started with the global positioning systems for outdoor areas...
[EN] Localization inside the human body using ultrawideband (UWB) wireless technology is gaining imp...