Simulation Design Bandpass Filter Microstrip Center Frequency 113 Mhz Using Hairpin Structure

Jonathan Japalti Banjarnahor, Muh. Wildan, Aringga Zulkarnain

Abstract


Bandpass filter is an important component in aviation equipment that functions to pass the desired frequency and to stop unwanted frequencies. In this research, the simulation design was carried out with a bandpass filter microstrip which works on the center frequency 113 MHz using hairpin structure for the receiver navigation analyzer system. This system is one of the systems installed in drone in implementation ground inspection for ILS/VOR equipment. Bandpass filter is designed using a simulation software with various dielectric materials / substrates, such as R04350, FR-4, and RT5880, for comparison purposes. The simulated parameter values obtained include return loss, insertion loss, and bandwidth.


Keywords


bandpass filter; return loss; insertion loss; bandwidth; ILS/VOR; hairpin structure

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References


Astuti, D. W., & Walesian, D. J. (2014). Rancang Bangun Bandpass Filter Frekuensi 1,8 GHz Dengan Perbaikan Resonator Hairpin. TESLA, 16(2), 141–148.

Bismoko, N. D. (2016). Perancangan Bandpass Filter Berbasis Substrate Integrated Waveguide (SIW) dengan Metode Defected Structure (DGS) untuk Aplikasi Ground Penetrating Radar (GPR) – Ultra Wideband (UWB). Institut Teknologi Sepuluh Nopember.

Direktorat Jenderal Perhubungan Udara. (2019). Peraturan Direktorat Jenderal Perhubungan Udara Nomor KP 35 Tahun 2019 Tentang Pedoman Teknis Operasioanal Peraturan Keselamatan Penerbangan Sipil Bagian 171 - 12 ( Advisory Circular part 171 -12) Prosedur Pemeliharaan Fasilitas Telekomuniksasi Penerbanga. In Peraturan Direktorat Jenderal Perhubungan Udara Nomor KP 35 Tahun 2019 Tentang Pedoman Teknis Operasioanal Peraturan Keselamatan Penerbangan Sipil Bagian 171 - 12 ( Advisory Circular part 171 -12) Prosedur Pemeliharaan Fasilitas Telekomuniksasi Penerbanga. Direktorat Jenderal Perhubungan Udara.

Fatonah, F. (2014). Metode Pengukuran Peralatan Localizer di Bandar Udara (Studi Kasus Bandar Udara Sam Ratulangi-Manado). Warta Ardhia, 40(3), 173–188. https://doi.org/10.25104/wa.v40i3.130.173-188

Fitria Nurjihan, S., & Munir, A. (2020). Rancang Bangun Filter Bandpass Mikrostrip Pita Sangat Lebar Berbasis Defected Ground Structure (Design of Ultra Wideband Microstrip Bandpass Filter Based on Defected Ground Structure). Jurnal Nasional Teknik Elektro Dan Teknologi Informasi, 9(1), 104–109. https://doi.org/10.22146/jnteti.v9i1.119

Fubian, N., Wijanto, H., & Saputri, D. M. (2018). Filter Band Pass Mikrostrip Dengan Stepped Impedance Resonator (Sir) Untuk Synthetic Aperture Radar (Sar) L-Band. TEKTRIKA - Jurnal Penelitian Dan Pengembangan Telekomunikasi, Kendali, Komputer, Elektrik, Dan Elektronika, 2(2), 8–14. https://doi.org/10.25124/tektrika.v2i2.1668

Gracia Simatupang, A. Y., Prakoso, T., & Santoso, I. (2018). Perancangan Dualband Bandpass Filter dengan Metode Square Open Loop Resonator pada Frekuensi 2100 MHz. TRANSMISI, 20(3), 133. https://doi.org/10.14710/transmisi.20.3.133-137

Khani, S., Makki, S. V. A. D., Mousavi, S. M. H., Danaie, M., & Rezaei, P. (2017). Adjustable Compact Dual-Band Microstrip Bandpass Filter Using T-Shaped Resonators. Microwave and Optical Technology Letters, 59(12), 2970–2975. https://doi.org/10.1002/mop.30864

Lu, H., Wu, W., Huang, J., Zhang, X., & Yuan, N. (2017). Compact Dual-mode Microstrip Bandpass Filter Based on Greek-cross Fractal Resonator. Radio Engineering, 26(1), 275–284. https://doi.org/10.13164/re.2017.0275

Mozaffari, M., Saad, W., Bennis, M., Nam, Y. H., & Debbah, M. (2019). A Tutorial on UAVs for Wireless Networks: Applications, Challenges, and Open Problems. IEEE Communications Surveys and Tutorials, 21(3), 2334–2360. https://doi.org/10.1109/COMST.2019.2902862

Orifansyah, A., Djatmiko, W., & Maruddani, B. (2020). Rancang Bangun Bandpass Filter Mikrostrip Metode Hairpin Pada Frekuensi 2.3 Ghz. JURNAL PENDIDIKAN VOKASIONAL TEKNIK ELEKTRONIKA (JVoTE), 3(2), 59–66. https://doi.org/10.21009/jvote.v3i2.20055

Praludi, T., & Sulaeman, Y. (2016). Desain dan Realisasi Filter Bandpass Mikrostrip Dengan Struktur Hairpin. Jurnal Elektronika Dan Telekomunikasi, 13(1), 33. https://doi.org/10.14203/jet.v13.33-37

Rohman, S. N. A. (2019). Perancangan Filter Bandpass Pada Frekuensi 2.9-3.1 GHz Sebagai Penunjang Kinerja Radar Coastal Di Wilayah Perairan Indonesia. Institut Teknologi Sepuluh Nopember.

Schrader, T., Bredemeyer, J., Mihalachi, M., Rohde, J., & Kleine-Ostmann, T. (2016). Concept And Design Of A UAS-Based Platform For Measurements Of RF Signal-In-Space. Advances in Radio Science, 14, 1–9. https://doi.org/10.5194/ars-14-1-2016

Sugiyono, P. D. (2020). Metode Penelitian Kuantitatif Kualitatif dan R&D (M. Dr. Ir. Sutopo, S.Pd (ed.); Kedua). Alfabeta, cv.




DOI: https://doi.org/10.30596/ijems.v5i3.16326

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Indonesian Journal of Education and Mathematics Science

Universitas Muhammadiyah Sumatera Utara
Kampus Utama
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