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Experimental Path Loss Models Comparison and Localization of Wireless Endoscopic Capsule in the Ultra-Wideband Frequency Band.

, , , , , , , , and . BODYNETS, page 443-453. Springer, (2018)

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Experimental Assessment of Time Reversal for In-Body to In-Body UWB Communications., , , and . Wirel. Commun. Mob. Comput., (2018)Accurate broadband measurement of electromagnetic tissue phantoms using open-ended coaxial systems., , , , and . ISMICT, page 32-36. IEEE, (2017)Experimental In-Body to On-Body and In-Body to In-Body Path Loss Models of Planar Elliptical Ring Implanted Antenna in the Ultra-Wide Band., , , , , , , , and . ISMICT, page 1-5. IEEE, (2019)Initial Delay Domain UWB Channel Characterization for In-Body Area Networks., , and . ISMICT, page 1-5. IEEE, (2019)Impact of Receivers Location on the Accuracy of Capsule Endoscope Localization., , , , , and . PIMRC, page 340-344. IEEE, (2018)Experimental phantom-based evaluation of Physical Layer Security for Future Leadless Cardiac Pacemaker., , , , , , and . PIMRC, page 333-339. IEEE, (2018)Time Frequency Slicing coverage gain modeling for future broadcasting networks., , , and . ICT, page 181-185. IEEE, (2014)Dielectric Characterization of In Vivo Abdominal and Thoracic Tissues in the 0.5-26.5 GHz Frequency Band for Wireless Body Area Networks., , , , , , and . IEEE Access, (2019)Initial UWB in-body channel characterization using a novel multilayer phantom measurement setup., , , , and . WCNC Workshops, page 384-389. IEEE, (2018)RSS-Based Secret Key Generation in Wireless In-body Networks., , , , , and . ISMICT, page 1-6. IEEE, (2019)