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Pseudorange error analysis for precise indoor positioning system


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[1] L. Zaplatilek, M. Pola and P. Bezousek, “Modeling of precise indoor positioning system”, Conference on Microwave Techniques (COMITE) [online], IEEE, 2015, 1-4 [cit.2015-06-15]. DOI: 10.1109/COMITE.2015.7120322. ISBN 978-1-4799-8121-2.10.1109/COMITE.2015.7120322Search in Google Scholar

[2] S. H. Gezici and V. Poor, “Position Estimation via Ultra-Wide-Band Signals”, Proceedings of the IEEE [online], 2009, 97 (2), 386-403 [cit.2016-07-04], DOI: 10.1109/JPROC.2008. 2008840. ISSN 0018-9219.Search in Google Scholar

[3] A. N. d’Andrea, U. Mengali and R. Reggiannini, “The modified Cramer-Rao bound and its application to synchronization problems”, IEEE Transactions on Communications [online]. 1994, 42(2/3/4), 1391-1399 [cit.2016-04-26], DOI: 10.1109/TCOMM, 1994, 580247, ISSN 0090-6778.Search in Google Scholar

[4] J.-P. [4] and Delmas, “Closed-form expressions of the true Cramer-Rao bound for parameter estimation of BPSK, MSK or QPSK waveforms”, 14th European Signal Processing Conference (EUSIPCO 2006), Florence, Italy, EURASIP, 2006, pp. 4-8, ISSN 2219-5491.Search in Google Scholar

[5] D. [5], Ch-Ch. Dardari, M. Chong and Win, “Improved Lower Bounds on Time-of-Arrival Estimation Error Realistic UWB Channels”, 2006 IEEE International Conference on Ultra-Wideband [online]. IEEE, 2006, pp. 531-537 [cit.2016-07-05]. DOI: 10.1109/ICU, 2006, 281605, ISBN 1-4244-0102-X.Search in Google Scholar

[6] J. [6], L. Serra, M. Blanco and Najar, “Cramer-Rao bound for time-delay estimation the frequency domain”, 17th European Signal Processing Conference [online], 2009, pp. 1037-1041 [cit.2016-07-05], ISSN 2219-5491.Search in Google Scholar

[7] S. [7], J. Lang, McClellan, Frequency, estimation, with, maximum, entropy and spectral, “”, IEEE Transactions on Acoustics, Speech, and Signal Processing [online], 1980, 28(6), pp. 716-724 [cit.2016-07-05], DOI: 10.1109/TASSP, 1980, 1163467, ISSN 0096-3518.Search in Google Scholar

[8] D. Cassioli, M. Z. Win and A. F. Molisch, “The ultra-wide band-width indoor channel: from statistical model to simulations”, IEEE Journal on Selected Areas Communications [online]. 2002, 20(6), pp. 1247-1257 [cit.2016-05-10]. DOI: 10.1109/JSAC.2002.801228. ISSN 0733-8716.10.1109/JSAC.2002.801228Search in Google Scholar

[9] A. Moscchitta, D. Macii, F. Trenti, S. Dalpez and A. Bozzoli, “Characterization of a geometrical wireless signal propagation model for indoor ranging techniques”, In: 2012 IEEE International Instrumentation and Measurement Technology Conference Proceedings [online], IEEE, 2012, pp. 2598-2603, [cit.2016-05-10], DOI: 10.1109/I2MTC, 2012, 6229373, ISBN 978-1-4577-1772-7.Search in Google Scholar

[10] R. Desimone, B. M. Brito and J. Baston, “Model of indoor signal propagation using log-normal shadowing”, In: 2015 Long Island Systems, Applications and Technology [online], IEEE, 2015, pp. 1-4 [cit.2016-05-10], DOI: 10.1109/LISAT, 2015, 7160217, ISBN 978-1-4799-8643-9.Search in Google Scholar

[11] Y.-H. Kim, J.-H. Lee and S.-Ch. Kim, “Modelling of UWB channel with population density indoor LOS environments”, IEEE Antennas and Wireless Propagation Letters [online], pp. 1-1 [cit.2016-05-10], DOI: 10.1109/LAWP, 2015, 2512988, ISSN 1536-1225.Search in Google Scholar

[12] J. Sykora, Theory of digital communication (in Czech)”, Praha, CVUT Publ., 2002, ISBN 80-01-02478-4.Search in Google Scholar

[13] J. Hansen, “An analytical calculation of power delay profile and delay spread with experimental verification”, IEEE Communications Letters [online], 2003, 7(6), pp. 257-259 [cit.2016-06-23], DOI: 10.1109/LCOMM, 2003, 813815, ISSN 1089-7798.Search in Google Scholar

[14] S. S. Ghassemyadeh, L. J. Geenstein, T. Sveinsson, A. Kavcic and V. Tarokh, “UWB Delay Profile Models for Residential and Commercial Indoor Environments”, IEEE Transactions on Vehicular Technology[online], 2005, 54(4), pp. 1235-1244, [cit.2016-06-23], DOI: 10.1109/TVT, 2005, 851379, ISSN 0018-9545.Search in Google Scholar

[15] E. D. Kaplan and C. Hegarty, “Understanding GPS: principles and applications”, 2nd ed., Boston: Artech House, c2006, Prentice Hall signal processing series, ISBN 15-805-3894-0.Search in Google Scholar

[16] A. Vizinho and L. R. Wyatt, “Evaluation of the use of the modified-covariance method HF radar ocean measurement”, IEEE Journal of Oceanic Engineering [online], 26(4), pp. 832-840 [cit.2016-07-05], DOI: 10.1109/48.972123, ISSN 03649059.10.1109/48.972123Search in Google Scholar

[17] M. Lauterbach, M. Pola, L. Zaplatilek and P. Bezousek, “Accuracy of spectral analysis methods for precision indoor positioning system”, In: The 10th International Conference on Digital Technologies 2014 [online], IEEE, 2014, pp. 217-220 [cit.2015-06-12]. DOI: 10.1109/DT.2014.6868716, ISBN 978-1-4799-3303-7.10.1109/DT.2014.6868716Search in Google Scholar

[18] J. Skapa and M. Pola, “Ultra Wide Band receiver design”, 2016, In: 26th International Conference Radioelektronika, Kosice, Slovakia, 2016, pp. 304-308, DOI: 10.1109/RADIOELEK.2016. 7477406.Search in Google Scholar

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