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STUDI SISTEM SCADA SEBAGAI PENGENDALI POMPA DI PDAM TIRTANADI IPAM SUNGGAL: STUDY OF SCADA SYSTEM AS PUMP CONTROLLER AT PDAM TIRTANADI IPAM SUNGGAL Simaremare, Ruben; Iriani, Juli; Putri, Maharani; Sitorus, Nobert; Pardede, Sutan; Rumahorbo, Priansus Rhein; Nainggolan, Tito Karnavian
Jurnal Ilmiah Tenaga Listrik Vol. 2 No. 2 (2023): Jurnal Ilmiah Tenaga Listrik
Publisher : Politeknik Negeri Medan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51510/jitl.v2i2.1426

Abstract

Abstract Technological developments in the industrial world are a clear example of developments in the industrial era 4.0. SCADA (Supervisory Control And Data Acquisition) is needed in industry and factories, where it has various advantages such as in terms of cost, maintenance, repair and monitoring. SCADA, PLC, and HMI belong to the type of automation world that are very interconnected with one another, automation is a technology that relates to the application of mechanical, electronic, and computer-based information systems to be able to operate and control factory production. and industry. By implementing SCADA (Supervisory Control And Data Acquisition) system technology, the scope of operation, maintenance and supervision of the performance process of pumps, engines, and other electrical equipment that can be controlled in one control room easily by the operator. The application of SCADA as a pump controller to maintain and improve the quality of clean water supply services at PDAM Tirtanadi IPAM Sunggal which is increasing day by day and is urgently needed by the people of Medan Keywords : SCADA, PLC, HMI, Pump Abstrak Perkembangan teknologi dalam dunia industri merupakan contoh nyata dari perkembangan di zaman industri 4.0. SCADA (Supervisory Control And Data Acquisition) sangat dibutuhkan pada industri dan pabrik, dimana berbagai kelebihan yang dimilikinya seperti dalam hal biaya, perawatan, perbaikan, dan pemantauan. SCADA, PLC, dan HMI termasuk ke dalam jenis dunia otomatisasi yang sangat saling berhubungan antara satu dengan yang lainnya, otomatisasi adalah suatu teknologi yang berhubungan dengan penerapan sistem mekanis, elektronik, dan juga sistem informasi yang berdasarkan komputer untuk bisa mengoperasikan dan juga mengendalikan produksi pabrik maupun industri. Dengan menerapkan teknologi sistem SCADA (Supervisory Control And Data Acquisition), ruang lingkup operasi, perawatan, dan pengawasan terhadap proses kinerja pompa, mesin, dan peralatan listrik lainnya yang dapat di kendalikan dalam satu ruangan kendali dengan mudah oleh operator. Penerapan SCADA sebagai pengendali pompa untuk mempertahankan dan meningkatkan kualitas pelayanan penyediaan debit air bersih pada PDAM Tirtanadi IPAM Sunggal yang semakin hari meningkat dan sangat dibutuhkan oleh masyarakat kota Medan Kata Kunci: SCADA, PLC, HMI, Pompa
Automation System of Water Circulation and Fish Feeding in Tilapia Fish Pond with Solar Panel Source Iriani, Juli; Dharma, Surya; Gunoro; Sitorus, Nobert; Rumahorbo, Priansus Rhein; Ridho; Cholish; Wahyudi
International Journal of Applied Research and Sustainable Sciences Vol. 2 No. 10 (2024): October 2024
Publisher : MultiTech Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59890/ijarss.v2i10.2592

Abstract

Tilapia cultivation requires good management of water quality and proper feeding to ensure optimal fish growth. One of the main challenges in this process is maintaining the water pH level within ideal limits and providing feed according to the needs of the fish based on their size. In addition, limited access to electricity in some locations makes fish pond management less efficient. This study aims to design an automated water circulation system that is regulated based on the water pH level and automatic feeding according to the needs of the fish, by utilizing solar panels as a power source. This system uses a pH sensor to monitor water conditions in real time and regulate water circulation to maintain ideal pH levels. Feeding is regulated based on the size and number of fish to ensure optimal feed efficiency and fish growth. This system is powered by solar panel energy, so it can operate independently without relying on conventional electricity networks. Test results show that the system is able to maintain water pH stability and automate feeding with high accuracy, while utilizing renewable energy effectively. The use of solar panels not only reduces dependence on electricity, but also reduces operational costs and supports environmental sustainability. This system is expected to increase the efficiency and productivity of tilapia cultivation, especially in areas with limited access to electricity.