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Sistem Otomatisasi Sirkulasi dan Penggantian air Kolam Menggunakan Arduino Uno untuk Peternakan Ikan di Sukabangun Kabupaten Ketapang Syarif Ishak Alkadri; Yudi Chandra
Energi & Kelistrikan Vol 11 No 2 (2019): Energi & Kelistrikan
Publisher : Sekolah Tinggi Teknik PLN

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (333.107 KB) | DOI: 10.33322/energi.v11i2.760

Abstract

This tool detects turbidity by paying attention to the resistance value on the LDR sensor that is the less light received by the LDR sensor, the higher the resistance so that at some level will appear on the LCD whether classified as turbid, very turbid, clear or very clear. While the drain pump will work if the water is considered unhealthy for fish, for example, turbid water is even very turbid and the pump will die if the ultrasonic sensor has got the maximum distance ie in this system it is> 21 cm Filling pump will work if pump 1 is dead and will die if has reached the minimum distance of <= 7 cm. While for the PH value can be seen through a probe dipped in the pool and the results can be known on the LCD, if the water is detected to have an abnormal PH then the pump will drain automatically until the water PH state becomes normal and the automatic feeder system is by adjusting the delay of the servo motor. From the tests carried out, it was found that this tool can detect the level of turbidity of water whether the water is classified as very turbid, turbid, less clear, clear and if what is detected is very turbid then the pump will drain and refill automatically. This tool can also detect the PH value of water which will command the drain pump to work if the water PH is not normal as programmed. and can feed automatically whether 3,4,5 or 6 times a day.
PERANCANGAN SISTEM MONITORING LISTRIK 3 PHASA BERBASIS INTERNET OF THINNGS (IOT) Syarif Ishak Alkadri; Akhdiyatul Akhdiyatul
Electrical Network Systems and Sources Vol 2 No 1 (2023)
Publisher : entries

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58466/entries.v2i1.1129

Abstract

ABSTRACT The electrical system is an important component in modern infrastructure, because almost all devices used in human activities today use electricity as a resource. To maintain the continuity of these activities, a system is needed that can monitor electrical conditions in real time in order to prevent bigger problems from occurring in the electrical system. This monitoring system uses the PZEM-004T to measure voltage, current, and frequency. NodeMCU ESP8266 to help display data such as, Voltage, Current, and Frequency on I2C and Blynk LCDs. I2C LCD to display Voltage, Current and Frequency. And Blynk to display Voltage, Current and Frequency. The results of the tests that have been carried out have an average error value of 0.0012% for voltage and 0.28% for current. Where the average error value in each test is below the tolerance value stated in the PZEM-004T sensor specifications, which is 0.5%. Keywords: Monitoring, Voltage, Current, Frequency, Blynk.
Perencanaan Sistem Otomatisasi Smartroom Berbasis Mikrokontroller Arduino Uno Syarif Ishak Alkadri; Erick Radwitya
Electrical Network Systems and Sources Vol 2 No 2 (2023)
Publisher : entries

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58466/entries.v2i2.1130

Abstract

The development of increasingly advanced technology has now been widely applied in human life to assist in every activity. In meeting the needs of life, humans always want and think about ways to carry out daily activities effectively and efficiently. The purpose of this study was to produce a prototype for controlling electronic devices at short or long distances using a smartphone application utilizing internet connectivity which is accessed through an application installed on a smartphone. Electronic devices that can be controlled consist of 4 lights and 4 sockets. Installing this tool costs Rp. 563,000, The conclusion of this study is that you can control the on and off lights and sockets either using a switch or using the Ardiuino bluetooth controller application. control of these electronic components can be applied to residential or apartment buildings for automatic control systems and also monitoring of electronic components with the Ardiuino bluetooth controller application. Based on the results of this final project is to make a single line and wiring diagram, namely in the installation of an automatic room or smartroom, namely the use of 4 lights. .Keywords: Smartroom, Lighting Automation System, Microcontroller.