Analisis Pengaruh Tilting Antenna Terhadap Coverage Area Jaringan 4G LTE (Studi Kasus Kecamatan Trenggalek)
DOI:
https://doi.org/10.33795/jartel.v9i4.154Keywords:
4G LTE, Coverage Area, Titling Antenna, Okumura Hata, AtollAbstract
4G LTE networks in big cities are already well available. Meanwhile, on small to medium-sized cities, the 4G LTE network is not evenly distributed and maximized. This study chooses the variable tilting antenna to the coverage area, because in sending information from a base station using an antenna. The average RSRP value (dBm) of the existing base station in the calculation with a distance of 200 m is -122.90 dBm, a distance of 500 m is -136.79 dBm, and a distance of 1000 m -147.30 dBm. Meanwhile, in the simulation with a distance of 200 m of -108.22 dBm, a distance of 500 m of -121.81 dBm, and a distance of 1000 m of -132.69 dBm. The coverage area value of the existing base station in the calculation is 5.29%, while in the simulation it is 11.18%. The average RSRP value (dBm) at optimal conditions for calculations at a distance of 200 m is -80.13 dBm, at a distance of 500 m is -94.03 dBm and at a distance of 1000 m is -104.56 dBm. Meanwhile, the simulation at a distance of 200 m is -98.09 dBm, at a distance of 500 m is -112.79 dBm and at a distance of 1000 m is -123.31 dBm. The value of the coverage area for the calculation is 20.32%, while for the simulation it is 15.01%. The current need for base stations in Trenggalek District that has been met is 68%.
References
Aprilia, Galuh (2017). Perencanaan Jumlah Enodeb Untuk Jaringan Lte(Long Term Evolution) Di Kecamatan SamarindaUlu Menggunakan Atoll Versi 3.3.2, Politeknik Negeri Balikpapan
Dirga, Resita (2017). Perbandingan Coverage Area COST-231 Hata Dengan Standart Propagation Model Long Term Evolution (LTE) Di Kota Malang, Politeknik Negeri Malang
Fajrina, A. & Imansyah, F. & Suryadi, D. (2016). Pengaruh Pengaturan Physical Tunning Antenna Sectoral DalamMemaksimalkan Layanan Jaringan 4G, Universitas Tanjungpura
Fauzi, A. (2014). Perencanaan Kebutuhan Base Transceiver Station (BTS) Dan Optimasi Penempatan Menara Bersama Telekomunikasi, Dinas Perhubungan, Komunikasi dan Informatika, Kabupaten Blitar, Indonesia
Forsk (2009) : Atoll RF Planning & Optimisation Software, U.S : Forsk U.S
Patent and Trademark Office. 1-18
Gunadi Palilu, A. & Pratomo, I. (2014). Studi Awal Perencanaan Jumlah Kebutuhan BTS dalam Penerapan Menara Bersama Telekomunikasi di Kota Palangka Raya, ITS Surabaya
Makkatang, A. & Nugroho, R. (2015). Analisa Pengaruh Perubahan Tilt Antena Sektoral BTS Secara Dan Mechanical Site XL 3G
Pakubuwono, Universitas Nasional
Marga Limba, R. (2015), Desain dan Realisasi Antena BTS GSM Frekuensi 1710-1805 Omni-Directional Dengan Metode Discone Wire, Universitas Telkom
Juan Pradana, B. & Setiaji A. (2017). Perencanaan Pembangunan Jaringan 4G LTEDi Bandung Pada Frekuensi 2100 MHzMenggunakan Software Atoll, Akademi Telkom Sandhy Putra Jakarta
Rajput, Maneesh, Design & Analysis of Hexagonal Patch Antenna at 1,8 GHz for L-Band, Department of Electronics & Communication, C.S.E, 2014, India
Tristiyanto, Wawan, Analisis Perbandingan Pemodelan Propagasi Nilai Level Daya Terima Pada Sistem Dcs 1800 Di Kota Pontianak, 2017, Universitas Tanjungpura
Ulfah, M. (2018). Peningkatan Area Jangkuan Jaringan 4G LTE (Studi Kasus Kecamatan Samarinda Ulu), Politeknik Negeri Balikpapan
Ulfah, M. (2016). Perhitungan Pathloss TeknologiLong Term Evolution (LTE) Berdasarkan ParameterJarak E Node-B Terhadap Mobile Station Di Balikpapan, Politeknik Negeri Balikpapan
Wardhana. Lingga, Dewantoro. Anton, Harto Isybel, Mahardika. Dika, Hikmaturohman, Alfin, 2014, 4G Handbook Edisi Bahasa Indonesia, Jakarta: www.nulisbuku.com
Yusuf, R. R. & Usman, U.K., & Rohmah, Y. S. (2018). Analisa Perencanaan Perluasan Coverage Area LTE Di Kabupaten Garut, Universitas Telkom
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2019 Rizal Aji Istantowi
This work is licensed under a Creative Commons Attribution 4.0 International License.