Determination of MS Location through Building Using AoA Method of Frequency 47 GHz

https://doi.org/10.22146/ijitee.31955

Andrita Ceriana Eska(1*)

(1) Universitas Jember
(*) Corresponding Author

Abstract


This research discusses the determination of mobile station (MS) location of the uplink communication system. The location determination mobile station is based on the angle-of-arrival (AoA) method. The communication propagation is influenced by building environment. The building environment was modeled with diffraction method. Several diffraction methods were used such as single knife edge, and multiple knife edge method. The communication frequency used was 47 GHz. The analysis used percentage value at coverage area and comparison of error percent values between two method to determine mobile station location. The percentage of the communication coverage area obtained was 71.4% or of 255 from 300 nodes. The comparison methods used for mobile station location determination were the selection of the best SNR and localization technique. The error percentage value based on the selection of the best SNR method is 0.95%. The error percentage value based on localization technique method is 0.78%.

Keywords


single knife edge, multiple knife edge, bergedung, angle-of-arrival.

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References

[1] E.B. Dor, T.S. Rappaport, Y. Qiao, dan S.J. Lauffenburger, “Millimeter-wave 60 GHz Outdoor and Vehicle AOA Propagation Measurements using a Broadband Channel Sound,” IEEE Globecom, 2011.

[2] T.S.Rappaport, E.B.Dor, J.N.Murdock, dan Y.Qiao, “38 GHz and 60 GHz Angle-dependent Propagation for Cellular & Peer-to-Peer Wireless Communications,” IEEE ICC Wireless Communications, 2012.

[3] ITU, ITU-R Radio Communication Sector of ITU (Attenuation by atmospheric gases), ITU-R P.676-10, Geneva: Electronic Publication, 2013.

[4] T. S. Rappaport, F. Gutierrez, E.B. Dor, J.N. Murdock, Y. Qiao, dan J. I. Tamir, “Broadband Millimeter-Wave Propagation Measurements and Models Using Adaptive-Beam Antennas for Outdoor Urban Cellular Communication,” IEEE Transactions on Antennas and Propagations, Vol.61, No.4, 2013.

[5] Y. M. Tsang, dan A.S.Y. Poom, “Successive AoA Estimation : Revealing the Second Path for 60 GHz Communication System,” IEEE, Forty-Ninth Annual Allerton Conference, 2011.

[6] D. Zhu, J. Choi, dan R.W. Heath, “Auxiliary Beam Enabled AoD and AoA Estimation in MMWave FD-MIMO Systems,” IEEE, 2016.

[7] J.Yin, Q.Wan, S.Yang, dan K.C.Ho, “A Simple and Accurate TDOA-AOA Localization Method Using Two Stations,” IEEE Signal Processing Letters, Vol. 23, 2016.

[8] J.S. Seybold, Introduction to RF Propagation, New Jersey : John Wiley&Sons, 2005.

[9] S.R. Saunders, dan A.A. Zavala, Antennas and Propagation for Wireless Comunication Systems second edition, England : John Wiley & Sons, 2007.

[10] 3GPP 3rd Generation Partnership Project Technical Specification Group Radio Access Network Spatial Channel model Multiple Input Multiple Output (MIMO) simulations, 3GPP, 2011.



DOI: https://doi.org/10.22146/ijitee.31955

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