Arduino UNO Based Prototype Of Monitoring And Mapping Of Public Road Lighting Lights (PRL)

##plugins.themes.bootstrap3.article.main##

Aleksander Bima Tansri Mochamad Subianto Romy Budhi Widodo Yusuf Giovanno Octaviani Intan Randi

Abstract

Public road lighting (PRL) is a facility used by the community to work at night. Dinas Perumahan dan Permukiman (DISPERKIM) department is a tasked with making improvements and regulating PRL. However, DISPERKIM officers are still experiencing delays in making PRL improvements, because PRL monitoring and regulation is still by visiting each PRL location. The experimental results show, the trial of sending data with 100 experimental from GSM Shield SIM900 gets 1.55 seconds, while the NRF24L01 device is 1.69 seconds. Based on the results of trials on sending data shows the delay of sending data for the prototype parent by 50.7 seconds, and 56.4 seconds. Whereas the testing delay of sending data for child prototypes was 147.8 seconds or 02:27 minutes, and by 143.5 seconds or 02:23 minutes. The function of experimental is helping officer (DISPERKIM) to get a data for calculation and prediction about PJU condition on every area. Based on the design of the test system can be stated to run well, because the system can do remote monitoring and mapping.

##plugins.themes.bootstrap3.article.details##

Section
Articles
References
[1] Clark, R.V.G., 2008, Improving Street Lighting Reduce Crime in Residental Area, Problem-Oriented Guides for Police, United States, Department of Justice.
[2] Yulian, C., 2018, Perancangan Monitoring dan Controlling Sistem Penerangan Lampu Jalan Energi Panel Surya Berbasis Logika Fuzzy dan Wireless Sensor Network, Institut Teknologi Nasional (ITN), Malang.
[3] Ardiansyah, I., 2015, Sensor Tegangan, diakses pada tanggal 10 Februari 2019,
[4] Aryanti, R.I. & Kanedi, I., 2015, Pemanfaatan Google Maps API pada Sistem Informasi Geografis Direktori Perguruan Tinggi di Kota Bengkulu, ISSN, vol. 11, no. 2. Hh. 119-129.
[5] Maryana, A., 2014, Membangun Aplikasi Pemantauan dan Pengendalian Penerangan Jalan Umum pada Tol Jakarta-Merak, Universitas Komputer Indonesia, Bandung.
[6] Arwani, M., 2018, Perancangan Sistem Tracking Panel Surya Menggunakan Metode Kendali Logika Fuzzy, Universitas Jember, Jember.
[7] Shobrina, U.J., Primananda, R. & Maulana, R., 2018, Analisis Kinerja Pengiriman Data Modul Transceiver NRF24L01, Xbee dan Wifi ESP8266 Pada Wireless Sensor Network, Universitas Brawijaya, Malang.
[8] Lee, S., Tewolde, G. & Kwon, J., 2014, Design and Implementation of Vehicle Tracking System Using GPS/GSM/GPRS/ Technology and Smartphone Application.
[9] Widyaningtyas, A., 2014, Sistem Informasi Akademik Berbasis SMS Gateway Menggunakan Metode Prototipe, Universitas Dian Nuswantoro, Semarang.
[10] Sumardi 2013, Mengenal Mikrokontroler, Andi Offser, Jakarta.
[11] Mayangsari, M., 2014, Rancang Bangun Alar Penyemprot Nyamuk Berdasarkan Pengaturan Real Time Clock (RTC) dan Remote Control Menggunakan Mikrokontroller, Universitas Politeknik Negeri Sriwijaya, Palembang.
[12] Syahwil, M., 2013, Panduan Mudah Simulasi dan Praktik Mikrokontroler Arduino, Yogyakarta.
[13] Sugeng, AA., 2012, Perancangan dan Pembuatan Deteksi Jarak Benda Sebagai Alat Bantu Mobilitas untuk Tunanetra dengan Output Suara, Perguruan Tinggi Raharja, Tangerang.
[14] Guntoro, Helmi, Yoyo S., & Erik H., 2013, Rancang Bangun Magnetic Door Lock Menggunakan Keypad dan Solenoid Berbasis Mikrokontroler Arduino Uno, Electrans, vol. 12, no. 1. hh 40.
[15] Mardhika WK., 2016, Rancang Bangung Sistem Pakan Ikan Terjadwal dan Pasang Surut Air pada Akuaponik Berbasis Arduino Mega, Universitas Ma Chung, Malang.