JOINT DISTANCE AND AZIMUTH ANGLE ESTIMATION USING AN UWB-BASED INDOOR LOCALIZATION SYSTEM
Published In: 9TH INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTING, COMMUNICATION AND INFORMATION TECHNOLOGY
Author(s): JEAN-CHRISTOPHE COUSIN , MURIEL MULLER , NEL SAMAMA , NOUR AWARKEH
Abstract: This paper presents a ranging test conducted in a standard indoor environment using an ultra-wideband (UWB) radar system. The position is determined by jointly estimating the distance using the Energy Detection (ED) method, and the Azimuth angle using Phase Correlation (PC) method. The obtained results show that this UWB ranging system can improve the angular resolution compared to traditional Indoor Localization Systems (ILSs).
- Publication Date: 08-Dec-2019
- DOI: 10.15224/978-1-63248-181-8-02
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INTELLIGENT TECHNIQUE OF CONSTRUCTING EXACT STATISTICAL TOLERANCE LIMITS TO PREDICT FUTURE OUTCOMES UNDER PARAMETRIC UNCERTAINTY FOR PROGNOSTICS AND HEALTH MANAGEMENT OF COMPLEX SYSTEMS
Published In: 9TH INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTING, COMMUNICATION AND INFORMATION TECHNOLOGY
Author(s): GUNDARS BERZINS , KONSTANTIN N. NECHVAL
Abstract: The problem of constructing one-sided exact statistical tolerance limits on the kth order statistic in a future sample of m observations from a distribution of log-location-scale family on the basis of an observed sample from the same distribution is considered. The new technique proposed here emphasizes pivotal quantities relevant for obtaining tolerance factors and is applicable whenever the statistical problem is invariant under a group of transformations that acts transitively on the parameter space. The exact tolerance limits on order statistics associated with sampling from underlying distributions can be found easily and quickly making tables, simulation, Monte Carlo estimated percentiles, special computer programs, and approximation unnecessary. Finally, numerical examples are given, where the tolerance limits obtained by using the known methods are compared with the results obtained through the proposed novel technique, which is illustrated in terms of the extreme-value and tw
- Publication Date: 08-Dec-2019
- DOI: 10.15224/978-1-63248-181-8-03
- Views: 0
- Downloads: 0