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Journal : International Journal of Advanced Multidisciplinary

Calculation Analysis of Wire Feeder Power Delivery Efficiency on LineX – Y, Middle Java Supriyadi, Edy; Iriandi Ilyas; Ariman; Raihan Shodiq
International Journal of Advanced Multidisciplinary Vol. 2 No. 3 (2023): International Journal of Advanced Multidisciplinary (October - December 2023)
Publisher : Green Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.38035/ijam.v2i3.425

Abstract

The electric train (KRL) is a form of application of scientific and technological developments in the field of transportation so that KRL can replace modes of transportation that use coal or use diesel. Currently electric trains in Indonesia are one of the modes of transportation that are most widely used every day for activities ranging from transportation for schools and colleges to transportation used to go to work and other important activities. Every year electric train passengers in Indonesia are increasing, starting from 100 thousand passengers per day until it is predicted to be 1 million passengers per day. The capacity of the Purwosari Traction Substation (GT) can be categorized as sufficient, with the difference between the specifications of the power capacity and the calculated capacity of only 57.9%. On the Purwosari – Solo Balapan route, the cable type resistance was 0.000167 ?/m, from this type of resistance to the resistance calculated from usage, a difference of around 20.9%. As for the Feeder Wire type resistance, the cable specification limit with the calculation is still below the maximum limit so it is still feasible to use. Because the specification limit and the calculation results are around 99.654% of the limit at 20°C.
Design of an Efficiency Power Load Control Device on Production Machines with SCADA Basen on Programmable Logic Controller and Smartphone Supriyadi, Edy; Multi, Abdul; Ilyas, Iriandi; Jayanto Ramadhan, Anthony
International Journal of Advanced Multidisciplinary Vol. 3 No. 2 (2024): International Journal of Advanced Multidisciplinary (July-September 2024)
Publisher : Green Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.38035/ijam.v3i2.566

Abstract

With limited electrical resources and the increasing use of loads on the industry, it is required to optimize the use of electrical power. Thus, it requires continuous monitoring and automatic load control. Overall monitoring of power loads, and electrical control settings in the optimization of production machines that can be monitored remotely and comprehensively. To overcome this problem, the design of the electrical power load control device on production machines with scada based on programmable logic controllers and smartphones is made. This study uses an experimental method to obtain a suitable machine simulator, then the following steps are carried out: collecting data and information, determining the controller and communication system, making hardware design, wiring simulator, software controller design, android smartphone software design and HMI software design. As for the control of the electric power control system in optimizing the operation of production machines with scada and smartphones. From the test results obtained a system that can work well. This is evidenced by looking at the measurement data for testing the input/output signal from the controller by looking directly at the controller, as well as on the HMI monitor by displaying the amount of electrical power used and the amount of available electrical resources, which is done by simulating analog input/output. with a scale of 0-100% (0-10 V), 0-1000 KW (0-10 V).
Implementation of Remote Groundwater Filter With ESP32 based on Internet of Things Supriyadi, Edy; Ariman, Ariman; Ilyas, Iriandi; Setiawan, Arso Bagus
International Journal of Advanced Multidisciplinary Vol. 3 No. 4 (2025): International Journal of Advanced Multidisciplinary (January-March 2025)
Publisher : Green Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.38035/ijam.v3i4.739

Abstract

Conventional water filters available in the market cannot measure water quality, detect filter condition, automatically backwash when the filter is dirty and cannot be monitored anywhere. Therefore, by using ESP32, the filter condition can be determined and backwash if needed. From the existing problems, it is necessary to implement a control system and monitor the condition of the water filter, with the program features on the microcontroller and the web display used to control and monitor the tool, as well as internet of things-based testing and measurement of the tools made. From the research conducted, all sensors work well and the web display displays data in realtime so that it can support the performance of the tool to work as desired both automatically and manually.