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Perancangan Panel Kontrol Mesin Penggiling Kelapa dengan SCADA Noya, Donald Bastian; Putung, Yoice R.; Kasenda, Sonny; Sawidin, Sukandar
Prosiding Seminar Nasional Produk Terapan Unggulan Vokasi Vol 1 No 1 (2024): Prosiding Seminar Nasional Produk Terapan Unggulan Vokasi Politeknik Negeri Manad
Publisher : Pusat Penelitian dan Pengabdian Kepada Masyarakat Politeknik Negeri Manado

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Processing coconut into coconut milk is still done simply on a household scale in Indonesia. This method is considered impractical because it requires a lot of time and effort, especially when used in large quantities. To solve this problem, small and medium enterprises (SMEs) created a supervisory control and data acquisition (SCADA) system to control coconut grinding machines. The aim of this solution is to increase the productivity and efficiency of the coconut milk production process. The aim of this research is to create and implement a SCADA system that can monitor and control the operation of coconut grinding machines efficiently. System requirements analysis, SCADA architecture design, PLC (programmable logic control) programming, and user interface development are some of the research methods used. This research is expected to produce significant improvements in the performance and competitiveness of SMEs in the coconut processing industry
Three Phase Motor Control and Phase Failure Protection Based on Zelio Smart Relay Sawidin, Sukandar; Putung, Yoice R.; Kereh, Tracy Marsela; Waroh, Anthoinete
Jambura Journal of Electrical and Electronics Engineering Vol 7, No 2 (2025): Juli - Desember 2025
Publisher : Electrical Engineering Department Faculty of Engineering State University of Gorontalo

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37905/jjeee.v7i2.32438

Abstract

Three-phase induction motors are vital components in various industrial applications due to their robust characteristics and high operational efficiency. However, these motors are susceptible to electrical disturbances, particularly phase failure, which can cause significant damage if not handled properly. In response to this issue, this study designs and implements a three-phase induction motor control system integrated with Phase Failure Relay (PFR) protection based on the Smart Relay Zelio. The system is designed to detect phase failures in real-time and respond automatically to prevent further damage to the motor. The methodology used includes the design of a control scheme based on the Smart Relay Zelio, integration of the PFR protection device, and a series of tests on system performance under varying load conditions and phase failure simulations. Test results show that the system can identify the loss of one phase with high accuracy and response speed. When a phase failure occurs, the system automatically stops the power supply to the motor to prevent more serious damage. In addition, the use of the Zelio Smart Relay provides ease of configuration, monitoring, and operational flexibility, which collectively contribute to improved system efficiency and safety. Therefore, it can be concluded that the three-phase induction motor control system equipped with PFR protection based on the Smart Relay Zelio is effective in detecting and responding to phase failures, while enhancing the overall reliability and safety of the electrical system.Motor induksi tiga fasa merupakan komponen vital dalam berbagai aplikasi industri karena karakteristiknya yang tangguh serta efisiensi operasional yang tinggi. Meskipun demikian, motor ini memiliki kerentanan terhadap gangguan kelistrikan, khususnya kegagalan fasa (phase failure), yang dapat menimbulkan kerusakan signifikan apabila tidak ditangani secara tepat. Sebagai respons terhadap permasalahan tersebut, penelitian ini merancang dan mengimplementasikan suatu sistem kendali motor induksi tiga fasa yang terintegrasi dengan proteksi Phase Failure Relay (PFR) berbasis Smart Relay Zelio. Sistem ini dirancang untuk melakukan deteksi gangguan fasa secara real-time serta merespons secara otomatis guna mencegah kerusakan lanjutan pada motor. Metodologi yang digunakan mencakup perancangan skema kendali berbasis Smart Relay Zelio, integrasi perangkat proteksi PFR, serta serangkaian pengujian terhadap performa sistem dalam kondisi beban yang bervariasi dan simulasi gangguan fasa. Hasil pengujian menunjukkan bahwa sistem mampu mengidentifikasi kehilangan salah satu fasa dengan tingkat akurasi dan kecepatan respons yang tinggi. Ketika terjadi kegagalan fasa, sistem secara otomatis menghentikan suplai daya ke motor untuk mencegah kerusakan yang lebih serius. Di samping itu, penggunaan Smart Relay Zelio memberikan kemudahan dalam proses konfigurasi, pemantauan, serta fleksibilitas pengoperasian, yang secara keseluruhan berkontribusi pada peningkatan efisiensi dan keselamatan sistem. Dengan demikian, dapat disimpulkan bahwa sistem kendali motor induksi tiga fasa yang dilengkapi dengan proteksi PFR berbasis Smart Relay Zelio terbukti efektif dalam mendeteksi dan merespons kegagalan fasa, sekaligus meningkatkan keandalan dan keselamatan sistem kelistrikan secara menyeluruh. 
Panel Kontrol ATS SCADA Putung, Yoice R.; Sawidin, Sukandar; Kereh, Tracy M.; Langi, Herry S.; Patabo, Muchdar Dg.; Loegimin, Maruto Swatara
JURNAL INTEGRASI Vol. 16 No. 1 (2024): Jurnal Integrasi - April 2024
Publisher : Pusat Penelitian dan Pengabdian Masyarakat Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30871/ji.v16i1.7317

Abstract

To guarantee a steady supply of electricity to the load, the Automatic Transfer Switch (ATS) panel management system is crucial in controlling the power flow between the primary and backup electricity sources. It integrates Supervisory Control and Data Acquisition (SCADA) technologies to improve the effectiveness and dependability of ATS operations. The goal of designing an ATS panel with SCADA control is to establish an ATS panel control system based on SCADA. The SCADA system will handle and evaluate the data gathered from this device in order to track and manage the functioning of the ATS. Additionally, in the event that the primary power source has an interruption or breakdown, the SCADA system will automatically trigger the ATS to switch to a backup source, minimizing recovery time and guaranteeing that the load will always have access to uninterrupted power.