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Abstract
Perusahaan yang bergerak di bidang produksi air minum dalam kemasan (AMDK) adalah PT Meteor, produk yang dihasilkan adalah produk merk “For3”. Integrasi sistem telekomunikasi yang digunakan adalah sistem telekomunikasi Perangkat pemancar dihubungkan dengan sensor parameterter air yang diletakkan pada sumber penampungan air (Tandon), dan antena pemancar berada pada ketinggian 8m. Perangkat penerima berjarak 80m, 180m, dan 250m dari pemancar dengan tinggi antena 1,5m dari permukaan tanah. Penelitian ini menggunakan modul transceiver RFM95W untuk mengetahui pengujian pengiriman data sensor dari sumber air menggunakan gateway LoRa berjalan lancar pada titik uji (jarak) diatas. Hasil RSSI dan SNR menunjukkan kuat sinyal sebesar -120dBm dan -20dB. Meskipun jarak semakin jauh nilainya masih terlihat positif, dapat dikatakan sinyalnya bagus.. Abstrak ditulis dalam bahasa Indonesia.
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Copyright (c) 2025 Audrey Nanda Natasya, Jannus Marpaung, Leonardus Sandy Ade Putra

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References
-
[1] J. Marpaung, “Sistem Informasi Real Time Kadar Garam Air Baku Pdam Tirta Khatulistiwa Pontianak Berbasis Teknologi Lora Gateway,” Jurnal Sistem dan Teknologi Informasi (JustIN), vol. 10, no. 2, p. 224, Jul. 2022, doi: 10.26418/justin.v10i2.50314.
[2] F. Imansyah, “KAJI TERAP SISTEM INFORMASI REAL TIME PARAMETER AIR BAKU AMDK (AIR MINUM DALAM KEMASAN) BERBASIS TEKNOLOGI LORA GATEWAY,” Jurnal Abdi Insani, vol. 11, no. 1, pp. 204–217, Jan. 2024, doi: 10.29303/abdiinsani.v11i1.1343.
[3] M. N. M. Satria Nova M.K., “Analisis Pengaruh Salinitas dan Suhu Air Laut Terhadap Laju Korosi Baja A36 pada Pengelasan SMAW,” JURNAL TEKNIK ITS, vol. 1, pp. 75–77, Sep. 2012.
[4] A. W. R. H. R. F. S. Eka Kurnia Sari, “Lora characteristics analysis for IoT application using NS3 simulator”.
[5] K. Olsson and S. Finnsson, “Exploring LoRa and LoRaWAN A suitable protocol for IoT weather stations”
[6] R. Franksson and A. Liljegren, “Measuring a LoRa Network Performance, Possibilities and Limitations.” [Online]. Available: www.bth.se
[7] I. , Y. R. R. , M. J. , & M. Fitri, “Analisis Teknik Dan Ekonomi Sistem Informasi Real Time Parameter Air Baku PDAM Tirta Khatuliswa Pontianak Berbasis Teknologi Lora Gateway. Buku Referensi, Pustaka Rumah Aloy,” pustaka rumah aloy, 2023.
[8] “petajajarvi-et-al-2017-performance-of-a-low-power-wide-area-network-based-on-lora-technology-doppler-robustness”.
[9] “PENDETEKSI KEBAKARAN HUTAN MENGGUNAKAN KOMUNIKASI LORA (LONG RANGE) WIRELESS NETWORK.”
[10] A. A. Al Sarfini and D. Irawan, “Sistem Kontrol Jarak Jauh Plc Menggunakan Esp32 Berbasis Iot,” JURNAL AMPLIFIER : JURNAL ILMIAH BIDANG TEKNIK ELEKTRO DAN KOMPUTER, vol. 14, no. 1, pp. 51–55, May 2024, doi: 10.33369/jamplifier.v14i1.33484.
[11] F. H. I. S. Ahmad Dzakiyuddin Muhaimin, “LoRa and IoT Based Monitoring System for Detecting Ganoderma Disease Attacks on Oil Palm Plants,” vol. 11, pp. 158–169, Dec. 2023.
References
[2] F. Imansyah, “KAJI TERAP SISTEM INFORMASI REAL TIME PARAMETER AIR BAKU AMDK (AIR MINUM DALAM KEMASAN) BERBASIS TEKNOLOGI LORA GATEWAY,” Jurnal Abdi Insani, vol. 11, no. 1, pp. 204–217, Jan. 2024, doi: 10.29303/abdiinsani.v11i1.1343.
[3] M. N. M. Satria Nova M.K., “Analisis Pengaruh Salinitas dan Suhu Air Laut Terhadap Laju Korosi Baja A36 pada Pengelasan SMAW,” JURNAL TEKNIK ITS, vol. 1, pp. 75–77, Sep. 2012.
[4] A. W. R. H. R. F. S. Eka Kurnia Sari, “Lora characteristics analysis for IoT application using NS3 simulator”.
[5] K. Olsson and S. Finnsson, “Exploring LoRa and LoRaWAN A suitable protocol for IoT weather stations”
[6] R. Franksson and A. Liljegren, “Measuring a LoRa Network Performance, Possibilities and Limitations.” [Online]. Available: www.bth.se
[7] I. , Y. R. R. , M. J. , & M. Fitri, “Analisis Teknik Dan Ekonomi Sistem Informasi Real Time Parameter Air Baku PDAM Tirta Khatuliswa Pontianak Berbasis Teknologi Lora Gateway. Buku Referensi, Pustaka Rumah Aloy,” pustaka rumah aloy, 2023.
[8] “petajajarvi-et-al-2017-performance-of-a-low-power-wide-area-network-based-on-lora-technology-doppler-robustness”.
[9] “PENDETEKSI KEBAKARAN HUTAN MENGGUNAKAN KOMUNIKASI LORA (LONG RANGE) WIRELESS NETWORK.”
[10] A. A. Al Sarfini and D. Irawan, “Sistem Kontrol Jarak Jauh Plc Menggunakan Esp32 Berbasis Iot,” JURNAL AMPLIFIER : JURNAL ILMIAH BIDANG TEKNIK ELEKTRO DAN KOMPUTER, vol. 14, no. 1, pp. 51–55, May 2024, doi: 10.33369/jamplifier.v14i1.33484.
[11] F. H. I. S. Ahmad Dzakiyuddin Muhaimin, “LoRa and IoT Based Monitoring System for Detecting Ganoderma Disease Attacks on Oil Palm Plants,” vol. 11, pp. 158–169, Dec. 2023.