Mafi, Mehdi and Azizi, Habib and Yazdizadeh Alborz, Hamidreza (2017): A new model of free global positioning system using triple DME. Published in: International Research Journal of Engineering and Technology (IRJET) , Vol. 04, No. 08 (August 2017): pp. 1815-1819.
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Abstract
This paper introduces a new scheme of global positioning system (GPS) without using of satellites or GPS- Free positioning. It is based on using triple distance measurement equipment (DME) which can be implemented with a map includes; determined longitude and latitude on the user`s receiver. First, advantages, previous studies and activities which are related to this subject is described as well as the DME properties are presented. Then, a practical model of triple DME and implementation of mathematical model on the map for finding the positions are discussed. Finally, the results of simulations are shown as well as the future of GPS- Free project and its prospective is stated.
Item Type: | MPRA Paper |
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Original Title: | A new model of free global positioning system using triple DME |
English Title: | A new model of free global positioning system using triple DME |
Language: | English |
Keywords: | Altitude, DME, GPS, Hand off, Longitude |
Subjects: | L - Industrial Organization > L7 - Industry Studies: Primary Products and Construction > L74 - Construction L - Industrial Organization > L8 - Industry Studies: Services > L86 - Information and Internet Services ; Computer Software L - Industrial Organization > L8 - Industry Studies: Services > L87 - Postal and Delivery Services L - Industrial Organization > L9 - Industry Studies: Transportation and Utilities > L96 - Telecommunications O - Economic Development, Innovation, Technological Change, and Growth > O3 - Innovation ; Research and Development ; Technological Change ; Intellectual Property Rights > O31 - Innovation and Invention: Processes and Incentives |
Item ID: | 92341 |
Depositing User: | Fatemeh Rahmani |
Date Deposited: | 24 Feb 2019 07:28 |
Last Modified: | 14 Oct 2019 16:32 |
References: | [1] S. Čapkun, M. Hamdi, and J.-P. Hubaux, "GPS-free positioning in mobile ad hoc networks," Cluster Computing, vol. 5, pp. 157-167, 2002. [2] M. Mafi, "Integration of Mobile Ad hoc and WIMAX Networks with Approach of Admission Control and Hand off Combination Applied in Telemedicine Services," American Journal of Scientific Research, vol. 83, pp. 14-24, 2012. [3] M. Mafi, "The role of mobile and remote sensing satellites in disaster management," International Journal of Modern Engineering Research, vol. 2, pp. 4010-4013, 2012. [4] F. Rahmani, F. Razaghian, and A. Kashaninia, "Novel Approach to Design of a Class-EJ Power Amplifier Using High Power Technology," World Academy of Science, Engineering and Technology, International Journal of Electrical, Computer, Energetic, Electronic and Communication Engineering, vol. 9, pp. 541-546, 2015. [5] M. Mafi, "A Hierarchical Model of ICT in Digital Society to Access Information," Canadian Journal on Electrical and Electronics Engineering, vol. 3, pp. 366-374, 2012. [6] M. Ketabdar, "Numerical and Empirical Studies on the Hydraulic Conditions of 90 degree converged Bend with Intake," International Journal of Science and Engineering Applications, vol. 5, pp. 441-444, 2016. [7] F. Rahmani, F. Razaghian, and A. Kashaninia, "High Power Two-Stage Class-AB/J Power Amplifier with High Gain and Efficiency," 2014. [8] M. Ketabdar and A. Hamedi, "Intake Angle Optimization in 90-degree Converged Bends in the Presence of Floating Wooden Debris: Experimental Development," Florida Civ. Eng. J, vol. 2, pp. 22-27.2016, 2016. [9] M. Mafi, H. Azizi, and H. Y. Alborz, "A new model of free global positioning system using Triple DME," International Research Journal of Engineering and Technology, vol. 4, 2017. [10] R. DO, "208, Minimum Operational Performance Standards for Airborne Supplemental Navigation Equipment Using Global Positioning System (GPS)," Inc., Washington, DC, 1991. [11] R. SC-181, Minimum aviation system performance standards: Required navigation performance for area navigation: RTCA, 2003. [12] M. Ketabdar, A. K. Moghaddam, S. A. Ahmadian, P. Hoseini, and M. Pishdadakhgari, "Experimental Survey of Energy Dissipation in Nappe Flow Regime in Stepped Spillway Equipped with Inclined Steps and Sill," International Journal of Research and Engineering, vol. 4, pp. 161-165, 2017. [13] S. C. Lo and P. Enge, "Assessing the capability of distance measuring equipment (DME) to support future air traffic capacity," Navigation: Journal of the Institute of Navigation, vol. 59, pp. 249-261, 2012. [14] R. S. Shirazi, M. Mafi, and H. Azizi, "A Low Noise PLL Frequency Synthesizer in 2.4 GHz with 1MHz Frequency Step," International Organization of Scientific Research Journal of Engineering, vol. 2, pp. 196-200, 2012. [15] A. Hamedi and M. Ketabdar, "Energy Loss Estimation and Flow Simulation in the skimming flow Regime of Stepped Spillways with Inclined Steps and End Sill: A Numerical Model," International Journal of Science and Engineering Applications, vol. 5, pp. 399-407, 2016. [16] M. Baqersad, A. E. Haghighat, M. Rowshanzamir, and H. M. Bak, "Comparison of coupled and uncoupled consolidation equations using finite element method in plane-strain condition," Civil Engineering Journal, vol. 2, pp. 375-388, 2016. [17] A. Hamedi, M. Ketabdar, M. Fesharaki, and A. Mansoori, "Nappe Flow Regime Energy Loss in Stepped Chutes Equipped with Reverse Inclined Steps: Experimental Development," Florida Civil Engineering Journal, vol. 2, pp. 28-37, 2016. [18] H. M. Sizkoohi, J. Milimonfared, M. Taheri, and S. Salehi, "High step-up soft-switched dual-boost coupled-inductor-based converter integrating multipurpose coupled inductors with capacitor-diode stages," IET Power Electronics, vol. 8, pp. 1786-1797, 2015. [19] H. Moradisizkoohi, J. Milimonfared, M. Taheri, and S. Salehi, "Duty-cycle-controlled resonant dual-half-bridge converter with multifunctional capacitors for distributed generation applications," IET Power Electronics, vol. 9, pp. 1873-1884, 2016. [20] M. Baqersad, A. Hamedi, M. Mohammadafzali, and H. Ali, "Asphalt mixture segregation detection: digital image processing approach," Advances in Materials Science and Engineering, vol. 2017, 2017. [21] A. Sargolzaei, C. D. Crane, A. Abbaspour, and S. Noei, "A machine learning approach for fault detection in vehicular cyber-physical systems," in 2016 15th IEEE International Conference on Machine Learning and Applications (ICMLA), 2016, pp. 636-640. [22] A. Abbaspour, K. K. Yen, S. Noei, and A. Sargolzaei, "Detection of fault data injection attack on uav using adaptive neural network," Procedia computer science, vol. 95, pp. 193-200, 2016. [23] A. Abbaspour, P. Aboutalebi, K. K. Yen, and A. Sargolzaei, "Neural adaptive observer-based sensor and actuator fault detection in nonlinear systems: Application in UAV," ISA transactions, vol. 67, pp. 317-329, 2017. |
URI: | https://mpra.ub.uni-muenchen.de/id/eprint/92341 |