Analisis Perbandingan Pemodelan Pathloss COST-231 Hata dan Walfisch Ikegami Terhadap Pathloss Pengukuran dengan Metode Drive test di Wilayah Banyumas

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Muntaqo Alfin Amanaf
Achmad Rizal Danisya
Robi Rodian

Abstract

Pemodelan Pathloss adalah komponen penting dalam perancangan jaringan komunikasi wireless. Pemodelan Pathloss ini membantu memprediksi seberapa buruk Pathloss atau redaman yang terjadi pada area perencanaan jaringan komunikasi wireless, Tetapi dalam memprediksi Pathloss diperlukan pemilihan beberapa pemodelan Pathloss yang sesuai dengan karakterisik wilayah tertentu agar pada saat implementasi jaringan wireless, jaringan tersebut dapat memberikan layanan komunikasi wireless yang optimal sesuai dengan hasil perancangan. Pada penelitian ini membandingkan  pemodelan Pathloss COST-231 Hata dan Pathloss Walfisch Ikegami terhadap Pasthloss Pengukuran di Wilayah banyumas untuk memilih pemodelan Pathloss yang sesuai dengan karakteristik wilayah banyumas di tiap Cluster Urban, Suburban dan Rural. Pathloss Pengukuran diperoleh melalui mengukur daya terima handphone dengan metode drivetest pada frekuensi 1800 Hz. Pada penelitian ini, penulis menganalisis grafik pathloss dan nilai MSE (Mean Square Error) dari Pathloss Pengukuran terhadap masing-masing pemodelan Pathloss di tiap Cluster. Hasil pada penelitian ini, Pemodelan Pathloss COST-231 Cluster Urban dan Rural mempunyai kesesuaian dengan Pathloss pengukuran dengan nilai MSE adalah 18,16 dB dan 10,33 dB, Sedangkan pada Cluster Suburban mempunyai kesesuaian dengan Pathloss Walfisch Ikegami dengan nilai MSE 5,58 dB.

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How to Cite
[1]
M. A. Amanaf, A. R. Danisya, and R. Rodian, “Analisis Perbandingan Pemodelan Pathloss COST-231 Hata dan Walfisch Ikegami Terhadap Pathloss Pengukuran dengan Metode Drive test di Wilayah Banyumas”, INFOTEL, vol. 9, no. 4, pp. 369-375, Nov. 2017.
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References

[1] Olasunkanmi Fatai Oseni, Segun Isaiah Popoola, "Empirical Path Loss Models for GSM Network Deployment in Makurdi, Nigeria," International Refereed Journal of Engineering and Science (IRJES), vol. 3, no. 6, pp. 85-94, Juni 2014.
[2] Dongya Shen, Yonggang Xie, Xiangde Li Yihuai Yung, "MATLAB Simulink of COST 231 - WI Model," International Journal of Wireless and Microwave Technologies, vol. 3, pp. 1 - 8, Juni 2012.
[3] Yuvraj Singh, "Comparison of Okumura, Hata and COST-231 Models on the Basis of Path Loss and Signal Strength," International Journal of Computer Applications, vol. 59, no. 11, pp. 37-41, Desember 2012.
[4] Premchandra Kumar, Bhushan Patil, and Suraj Ram, "Selection of Radio Propagation Model for Long Term Evolution (LTE) Network," International Journal of Engineering Research and General Science, vol. 3, no. 1, pp. 373-379, January-February 2015.
[5] A.N. Jadhav Sachin S. Kale, "An Empirically Based Path Loss Models for LTE Advanced Network and Modeling for 4G Wireless Systems at 2.4 GHz, 2.6 GHz and 3.5 GHz," International Journal of Application or Innovation in Engineering & Management (IJAIEM), vol. 2, no. 9, pp. 252 -257, September 2013.
[6] Parveen Kumar, Shashi B. Rana Pardeep Pathania, "Performance Evaluation of different Path Loss Models for Broadcasting applications," American Journal of Engineering Research (AJER), vol. 03, no. 04, pp. 335-342, 2014.
[7] Fakhruddin Ahmad NST, Delsina Faiza, and Khairi Budayawan, "Analisis Model Propagasi Komunikasi Bergerak pada Sistem GSM di PT. Xl AXIATA Padang," Jurnal Vokasional Teknik Elektronika & Informatika, vol. 4, pp. 11-21, Januari-Juni 2016.
[8] Pratibha Maina,Gopal Chandra Manna, Namrata Sahayam, "Validation Study Of Path Loss Models On Wimax At 2.6 Ghz Frequency Band In Suburban Environment For Cell Size Planning," International Journal of Next-Generation Networks (IJNGN), vol. 6, pp. 17-29, Juni 2014.
[9] Akujobi Ekeocha, Nosiri Onyebuchi, Achumba Ifenyinwa, "Comparative Study of Path Loss Models for Wireless Communication in Urban and Sub-urban Environment for Port Harcourt, Nigeria," American Journal of Engineering Research (AJER), vol. 4, no. 11, pp. 109-115, 2015.
[10] Esobinenwu C B.O.H Akinwole, "Adjustment of Cost 231 Hata Path Model For Cellular Transmission in Rivers State," IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE), vol. 6, no. 5, pp. 16-23, Juli- Agustus 2013.
[11] Andreas F. Molisch, Wireless Communications, Second Edition , 2nd ed.: A John Wiley and Sons, Ltd., Publication, 2011.
[12] Musa Ahmed, Tonga A. Danladi Dominic S. Nyitamen, "Path Loss Propagation Model Prediction For Gsm Mobile Network Planning In Kaduna Town," International Journal of Engineering Sciences & Research Technology, vol. 4, no. 4, pp. 345-352, April 2015.
[13] Jiri Hosek, Jiri Misurec Yahia Zakaria, "Path Loss Measurements for Wireless Communication in Urban and Rural Environments ," American Journal of Engineering and Applied Sciences, no. 1, pp. 94-99, Agustus 2015.
[14] Muntaqo Alfin Amanaf, Eko Setijadi, and Suwadi , "Implementasi Sistem Akuisisi Data pada Bridge Sructural Health Monitoring dengan Jaringan Sensor Nirkabel," in Proceeding Seminar Ilmu Pengetahuan Teknik 2013, Yogyakarta, 2013, pp. 428-432.
[15] R.K.Singh Purnima K. Sharma, "Propagation Path Loss Measurements and Spline Interpolation for Missing Data," International Journal of Mobile & Adhoc Network|, vol. 2, no. 1, pp. 68-72, Februari 2012.
[16] Eko Setijadi, Muntaqo A.A, Suwadi , and Slamet BP, "Design of Large Scale Structural Health Monitoring System for Long-Span Bridges Based on Wireless Sensor Network," in International Joint Conference on Awareness Science and Technology and Ubi-Media Computing (iCAST-UMEDIA), Aizu Wakamatsu, 2013, pp. 169-173.