An Analysis Of Mini Control Timer System For PDAM Water Processing Using Wave Control Method

  • Rudi Saputra Universitas Pembangunan Panca Budi, Medan, North Sumatera, Indonesia
  • Yopi Andinata Universitas Pembangunan Panca Budi, Medan, North Sumatera, Indonesia
  • Beni Satria Universitas Pembangunan Panca Budi, Medan, North Sumatera, Indonesia
Keywords: Optimization, Efficiency and integration of control systems

Abstract

In this study, a mini control timer system was analyzed in PDAM water treatment using the Control Wave method. In a water treatment system, timely control is very important to ensure optimal operational efficiency and water quality. The Control Wave method is applied to regulate and optimize the water treatment process more efficiently through automatic timer-based control. This system allows more flexible adjustments to variations in workload and operational conditions, thereby improving the overall performance of the water treatment process. which involves the development of a simulation model that describes the water treatment process with the integration of a Control Wave-based control system. The simulation results show that this method can improve energy efficiency, reduce downtime, and increase the stability of water treatment operations. In addition, the implementation of Control Wave in this mini control timer system has also been proven to be able to adjust to changes in operational needs dynamically, without sacrificing the quality of the processed water. The findings of this study provide a basis for further improvements in the control system in PDAM water treatment, especially in the use of automation technology to improve process reliability and efficiency.

Downloads

Download data is not yet available.

References

[1] A. Hasta dan R. Rulliyanto, “Penerapan Teknologi Komunikasi Nirkabel Berbasis Zigbee pada Sistem Pengendalian dan Monitoring Kelas,” Jurnal Ilmiah GIGA, jilid. 18, tidak. 2, hal.61–72, 2015.
[2] Alam, H., Lubis, Z., Adytia, B. S., Yuhendri, D., & Siregar, N. K. (2019). Rancang Bangun Alat Otomatis On/Off Ac Saat Mendeteksi Asap Menggunakan Sensor Asap Dan Notifikasi Alarm Berbasis Arduino. JET (Journal of Electrical Technology), 4(3), 172-177.
[3] Aryza, S., Lubis, Z., Indrawan, M. I., Efendi, S., & Sihombing, P. (2021). Analyzed New Design Data Driven Modelling of Piezoelectric Power Generating System. Budapest International Research and Critics Institute-Journal (BIRCI-Journal), 4(3), 5537-5547.
[4] M. Irsan, EB Stephen, dan A. Supriyono, "Perancangan dan Pembangunan Monitoring Ruang Server CCTV Menggunakan Raspberry Pi di Sekolah Pelita Harapan Lippo Village," Jurnal SISKOM-KB (Sistem Komputer dan Kecerdasan Buatan), jilid. 2, tidak. 2, hlm. 23–29, 2019.
[5] DW DARA, M. AYU, dan KRTP Sari, “Sistem monitoring dan notifikasi kualitas udara terhadap karbon monoksida di ruang belajar berbasis IoT,” Jurnal Intensif, jilid. 5, tidak. 1, hal.121–133, 2021.
[6] W. Dargie dan C. Poellabauer, Dasar-dasar jaringan sensor nirkabel: teori dan praktik. John Wiley & Putra, 2010.
[7] A. Guerrieri, G. Fortino, dan W. Russo, “Kerangka evaluasi untuk jaringan sensor nirkabel berorientasi bangunan,” di Simposium Internasional IEEE/ACM ke-14 tahun 2014 tentang Komputasi Cluster, Cloud dan Grid, IEEE, 2014, hlm.670–679.
[8] Digi International, “Panduan Pengguna Modul Frekuensi Radio (RF) XBee®/XBee-PRO S2C DigiMesh® 2.4,” 2022. Diakses: 10 Juni 2024. [Online]. Tersedia: https://www.digi.com/resources/documentation/digidocs/pdfs/90001506.pdf
[9] S. Bouckaert, E. De Poorter, P. De Mil, I. Moerman, dan P. Demeester, “Interkoneksi sensor nirkabel dan jaringan mesh nirkabel: Tantangan dan strategi,” di Konferensi Telekomunikasi Global IEEE GLOBECOM 2009-2009, IEEE, 2009, hlm.1–7.
[10] Satria, B. (2022). IoT Monitoring Suhu dan Kelembaban Udara dengan Node MCU ESP8266. sudo Jurnal Teknik Informatika, 1(3), 136-144.
[11] J. Riyanto, F. Nurlaila, H. Haerudin, dan BT Jarastino, "Perancangan dan Pembangunan Sistem Monitoring Kelas Berbasis Internet of Things di Universitas Pamulang," Jurnal Informatika Universitas Pamulang, jilid. 5, tidak. 4, hlm.483–489, 2021.
[12] T. Ghozali dan S. Mulyanti, “Jaringan Sensor Nirkabel untuk Memantau Suhu Ruangan Kelas,”Jurnal Listrik, jilid. 10, tidak. 2, hal.117–126, 2017.
[13] Tharo. Z dkk (2021), ANALISIS PERBANDINGAN KINERJA KWH METER PRABAYAR DAN PASCABAYAR. Prosiding Konferensi Nasional Social & Engineering Polmed (KONSEP), 2(1), 358-365.
[14] FZ Rachman, A. Armin, N. Yanti, dan Q. Hidayati, “Implementasi jaringan sensor nirkabel zigbee menggunakan topologi mesh untuk pemantauan dan pengendalian perangkat luar angkasa,” Jurnal Teknologi Informasi dan Ilmu Komputer, jilid. 4, tidak. 3, hal. 201–206, 2017.
Published
2024-09-04
How to Cite
Rudi Saputra, Yopi Andinata, & Beni Satria. (2024). An Analysis Of Mini Control Timer System For PDAM Water Processing Using Wave Control Method. Jurnal Scientia, 13(04), 1280-1292. Retrieved from https://infor.seaninstitute.org/index.php/pendidikan/article/view/2607