Turnitin
降AI改写
早检测系统
早降重系统
Turnitin-UK版
万方检测-期刊版
维普编辑部版
Grammarly检测
Paperpass检测
checkpass检测
PaperYY检测
[LIBRO][B] Distance measurement error modeling for time-of-arrival-based indoor geolocation
B Alavi - 2006 - search.proquest.com
In spite of major research initiatives by DARPA and other research organizations, precise
indoor geolocation still remains as a challenge facing the research community. The core of …
indoor geolocation still remains as a challenge facing the research community. The core of …
Computational methods for localization
This chapter introduces important parameters used in modelling a wireless channel. It
provides a brief tutorial on the time of arrival (TOA)‐based localization technique and …
provides a brief tutorial on the time of arrival (TOA)‐based localization technique and …
[PDF][PDF] Diffraction Analysis with UWB Validation for ToA Ranging in the Proximity of Human Body and Metallic Objects
F Askarzadeh - 2017 - digital.wpi.edu
The time-of-arrival (ToA)-based localization technique performs superior in line-of-sight
(LoS) conditions, and its accuracy degrades drastically in proximity of micro-metals and …
(LoS) conditions, and its accuracy degrades drastically in proximity of micro-metals and …
[PDF][PDF] Sensitivity Analysis for Measurements of Multipath Parameters Pertinent to TOA based Indoor Geolocation
Y Ye - 2009 - cwins.wpi.edu
Recently, indoor geolocation technologies has been attracting tremendous attention. For
indoor environments, the fine time resolution of ultra-wideband (UWB) signals enables the …
indoor environments, the fine time resolution of ultra-wideband (UWB) signals enables the …
[CITAZIONE][C] Analysis of undetected direct path in time of arrival based UWB indoor geolocation
(TOA) is seriously challenged with the occurrence of undetected direct path (UDP)
conditions caused by severe multipath in indoor areas. As a result, analysis of the …
conditions caused by severe multipath in indoor areas. As a result, analysis of the …
[CITAZIONE][C] Computational techniques for comparative performance evaluation of RF localization inside the Human Body
UI Khan, K Pahlavan, U Khan - 2011 - Worcester Polytechnic Institute