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Ground type resistance earthing system using bar electrodes Gery Ulayya Hardi; Taufiq; Raihan Putri; Fakhruddin Ahmad Nasution
Jurnal Mandiri IT Vol. 11 No. 3 (2023): January: Computer Science and Field.
Publisher : Institute of Computer Science (IOCS)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35335/mandiri.v11i3.191

Abstract

Providing a return line for short-circuit currents or fault currents to a low-resistance ground, a grounding system is useful for achieving a uniform potential voltage over a given area of buildings and equipment. Because a large voltage difference can occur if a fault current is forced to ground against high resistance. Placement of the electrode to be planted is one of the elements to obtain a low grounding resistance value. Grounding resistance measurements, which will serve as a guide for the grounding system design process, are required during the planning stage for certain types of grounding systems. The problem is how the grounding resistance is affected by the buried depth of the rod conductor and the soil-type resistance. Therefore, it is very important to conduct research and testing to determine the extent to which these parameters influence. The experimental results of measuring resistance on dry and wet soils are on dry soil 30 cm obtained 98.48 Ω, 60 cm obtained 37.07 Ω, 90 cm obtained 20.52 Ω, 120 cm obtained 19.77 Ω, and for wet soil at a depth of 30 cm obtained 43.34 Ω, 60 cm obtained 22.21 Ω, 90 cm obtained 15.43 Ω, 120 cm obtained 11.66 Ω.
Optimasi Penggunaan Data Logger Pada Internal Kendaraan Berbasis IOT Edo Roska; Taufiq; Rosdiana Rosdiana; Selamat Meliala
Jurnal Minfo Polgan Vol. 12 No. 1 (2023): Article Research March 2023
Publisher : Politeknik Ganesha Medan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33395/jmp.v12i1.12323

Abstract

Abstract―Vehicles are a secondary need for humans that can be postponed. However, Indonesia has a tropical climate, so everyone needs a vehicle as a means of transportation, therefore every year vehicles increase rapidly as the population increases. Indonesia is currently a fairly large vehicle sales market. So with the increasing number of road vehicles getting out of control, the result is congested roads, as a result of which traffic violations and accidents are increasing every year. Therefore, by making an optimization tool for using data loggers on two-wheeled vehicles, we intend to monitor every vehicle on the road. However, this research focuses on output data such as accuracy and delay of real time IoT-based vehicle data and data loggers that are stored automatically on SD memory cards in two-wheeled vehicles. The research results from the Infrared sensor data sent to the Blynk server, there is a fairly long delay and the data stored on the SD memory card is quite good, only has a delay per one second, the voltage sensor here plays a good role in real time data and data on the SD memory card because there is no delay the old ones are in sync with actual events, while the realtime control panel output results to the Blynk server using the NodeMCU ESP8266 produce realtime output, and the use of relays as controllers of the tools that have been made has been tested and obtained satisfactory results.
Ground type resistance earthing system using bar electrodes Gery Ulayya Hardi; Taufiq; Raihan Putri; Fakhruddin Ahmad Nasution
Jurnal Mandiri IT Vol. 11 No. 3 (2023): January: Computer Science and Field.
Publisher : Institute of Computer Science (IOCS)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35335/mandiri.v11i3.191

Abstract

Providing a return line for short-circuit currents or fault currents to a low-resistance ground, a grounding system is useful for achieving a uniform potential voltage over a given area of buildings and equipment. Because a large voltage difference can occur if a fault current is forced to ground against high resistance. Placement of the electrode to be planted is one of the elements to obtain a low grounding resistance value. Grounding resistance measurements, which will serve as a guide for the grounding system design process, are required during the planning stage for certain types of grounding systems. The problem is how the grounding resistance is affected by the buried depth of the rod conductor and the soil-type resistance. Therefore, it is very important to conduct research and testing to determine the extent to which these parameters influence. The experimental results of measuring resistance on dry and wet soils are on dry soil 30 cm obtained 98.48 Ω, 60 cm obtained 37.07 Ω, 90 cm obtained 20.52 Ω, 120 cm obtained 19.77 Ω, and for wet soil at a depth of 30 cm obtained 43.34 Ω, 60 cm obtained 22.21 Ω, 90 cm obtained 15.43 Ω, 120 cm obtained 11.66 Ω.